ɨÃè´Ë¶þάÂë·ÖÏí

³ØÕñ¹ú

Ðû²¼ÈÕÆÚ£º2024-09-04 09:26 ÔĶÁ´ÎÊý£º

»ù±¾ÇéÐÎ

³ØÕñ¹ú£¬£¬£¬ÄУ¬£¬£¬Õã½­ÈýÃÅÈË£¬£¬£¬Öй²µ³Ô±¡£¡£Àíѧ²©Ê¿£¬£¬£¬Èý¼¶½ÌÊÚ£¬£¬£¬²©Ê¿Éúµ¼Ê¦¡£¡£ÏÖΪҼºÅÓéÀÖAPPÇéÐÎÓ뻯ѧ¹¤³ÌѧԺרÈÎÎ÷ϯ¡£¡£Ö÷Òª´ÓÊÂÓлú¾ÛºÏÎï¹âµç¹¦Ð§ÖÊÁÏÓëÆ÷¼þÒÔ¼°Òº¾§¸ß·Ö×ÓÖÊÁÏ¿ª·¢Ñо¿¡£¡£½ÒÏþSCIÆÚ¿¯ÂÛÎÄ200ÓàÆª£¬£¬£¬°üÀ¨CCS Chem¡¢¡¢¡¢Chem Soc Rev¡¢¡¢¡¢Chem¡¢¡¢¡¢Angew Chem Int Ed¡¢¡¢¡¢Nat CommunµÈº£ÄÚÍâÖ÷ÒªÆÚ¿¯ÂÛÎÄ£¬£¬£¬ËùÓÐÂÛÎÄËûÒýÁè¼Ý2Íò´Î£¬£¬£¬16ƪÂÛÎĽøÈëESI¸ß±»ÒýÂÛÎÄ£¬£¬£¬HÖ¸Êý79¡£¡£ÈëÑ¡¿Æî£Î¨°²£¨Clarivate£©2023Äê¶ÈÈ«Çò¡°¸ß±»Òý¿ÆÑ§¼Ò¡±ºÍ°®Ë¼Î¨¶û£¨Elsevier£©2023Äê¡°Öйú¸ß±»ÒýѧÕß¡±Ãûµ¥¡£¡£ÊÚȨÖйú·¢Ã÷רÀû70Óà¼þ¡£¡£2008ÄêÆðÖ÷ÒªÖ÷³Ö¹ú¼Ò×ÔÈ»¿ÆÑ§»ù½ðÖØµãÏîÄ¿1Ïî¡¢¡¢¡¢ÃæÉÏÏîÄ¿7Ï£¬£¬¹ã¶«Ê¡Ç°ÑØÓëÒªº¦ÊÖÒÕÁ¢ÒìÖØ´óרÏî1Ïî¡£¡£»£»ñµÃ2018Äê¶È¹ã¶«Ê¡×ÔÈ»¿ÆÑ§½±Ò»µÈ½±ºÍ2021ÄêµÚÊ®Áù½ì¹ã¶«Ê¡¶¡Ó±¿Æ¼¼½±¡£¡£

1EE0A07F80FAD58FC36CA600A23_D8442D94_6F5D

ÁªÏµ·½Ê½

µØµã£º¹ã¶«Ê¡½­ÃÅÊÐÅî½­Çø¶«³É´å22ºÅ Ò¼ºÅÓéÀÖAPP ÇéÐÎÓ뻯ѧ¹¤³ÌѧԺ

Óʱࣺ529020

ÓÊÏ䣺chizhg@mail.sysu.edu.cn

ÊÂÇéÂÄÀú

2024Äê9ÔÂÖÁ½ñ£¬£¬£¬Ò¼ºÅÓéÀÖAPP£¬£¬£¬ÇéÐÎÓ뻯ѧ¹¤³ÌѧԺ£¬£¬£¬²©Ê¿Éúµ¼Ê¦

2017Äê5ÔÂÖÁ2018Äê7Ô£¬£¬£¬ Õ¿½­¾­¼ÃÊÖÒÕ¿ª·¢Çø(Õ¿½­¸ßÐÂÊÖÒÕ¹¤Òµ¿ª·¢Çø)¹Üί»á£¬£¬£¬¸±Ö÷ÈÎ(¹ÒÖ°)

2016Äê8ÔÂÖÁ2024Äê9Ô£¬£¬£¬ÖÐɽ´óѧ»¯Ñ§Ñ§Ôº£¬£¬£¬½ÌÊÚ

2015Äê7ÔÂÖÁ2016Äê5Ô£¬£¬£¬Ó¢¹ú¶ÅÂ×´óѧ(Durham University)»¯Ñ§Ïµ£¬£¬£¬»á¼ûѧÕß

2013Äê1ÔÂÖÁ2016Äê8Ô£¬£¬£¬ÖÐɽ´óѧ»¯Ñ§Ó뻯ѧ¹¤³ÌѧԺ£¬£¬£¬½ÌÊÚ

2006Äê10ÔÂÖÁ2013Äê1Ô£¬£¬£¬ÖÐɽ´óѧ»¯Ñ§Ó뻯ѧ¹¤³ÌѧԺ£¬£¬£¬¸±½ÌÊÚ

2005Äê8ÔÂÖÁ2006Äê9Ô£¬£¬£¬º«¹ú¸ßÀö´óѧ(Korea University)»¯Ñ§Ïµ, ²©Ê¿ºó

2003Äê8ÔÂÖÁ2005Äê7Ô£¬£¬£¬¸´µ©´óѧÖÊÁÏ¿ÆÑ§Ïµ£¬£¬£¬²©Ê¿ºó

1994Äê8ÔÂÖÁ2000Äê8Ô£¬£¬£¬ÉîÛÚÊнð¿ÆÌØÖÖÖÊÁÏÓÐÏÞ¹«Ë¾£¬£¬£¬²úÆ·¿ª·¢Ö°Ô±

½ÌÓý¼°Ñ§Ï°ÂÄÀú

2000Äê9ÔÂÖÁ2003Äê7Ô£¬£¬£¬ÖÐɽ´óѧ»¯Ñ§Ó뻯ѧ¹¤³ÌѧԺ£¬£¬£¬²©Ê¿

1991Äê9ÔÂÖÁ1994Äê7Ô£¬£¬£¬Öйú¿ÆÑ§Ôº³¤´ºÓ¦Óû¯Ñ§Ñо¿Ëù£¬£¬£¬Ë¶Ê¿

1987Äê9ÔÂÖÁ1991Äê 7Ô£¬£¬£¬º¼ÖÝ´óѧ»¯Ñ§Ïµ£¬£¬£¬Ñ§Ê¿

Ö÷ÒªÑо¿Æ«Ïò

Óлú¸ß·Ö×Ó¹âµçÏìÓ¦¹¦Ð§·Ö×Ó£¨Óлú·¢¹â¶þ¼«¹Ü¡¢¡¢¡¢Óлú³¡Ð§Ó¦¾§Ìå¹Ü¡¢¡¢¡¢¸ÆîÑ¿ó¼°È¾ÁÏÃô»¯Ì«ÑôÄÜµç³Ø¡¢¡¢¡¢ÓлúÓ«¹â̽ÕëÖÊÁÏ¡¢¡¢¡¢´Ì¼¤ÏìÓ¦ÖÇÄÜÖÊÁÏ£©¡¢¡¢¡¢Òº¾§¸ß·Ö×ÓÖÊÁÏ£¨LCP£©.

¿ÆÑÐÏîÄ¿

1. ¾ßÓÐȺ¼¯ÓÕµ¼·¢¹âÐÔÄܵÄÈáÐÔÇâ¼üÓлú¿ò¼ÜµÄ·Ö×ÓÉè¼ÆÕ½ÂÔ¼°´Ì¼¤ÏìÓ¦»úÖÆÑо¿£¬£¬£¬¹ú¼Ò»ù½ðÃæÉÏÏîÄ¿£¨52473195£©£¬£¬£¬ 2025.1-2028.12£¬£¬£¬ÏîÄ¿ÈÏÕæÈË.

2. ÃæÏò¾§Ô²¼¶·â×°µÄ¹âÃô¾Ûõ£Ñǰ·ÖÊÁÏÒªº¦ÊÖÒÕÑз¢¼°Ó¦Ó㬣¬£¬¹ú¼ÒÖØµãÑз¢ÍýÏë¡°¸ß¶Ë¹¦Ð§ÓëÖÇÄÜÖÊÁÏ¡±ÖصãרÏî(2022YFB3806600)£¬£¬£¬2022.11-2025.10£¬£¬£¬¿ÎÌâÈÏÕæÈË.

3. ÐÂÐÍÓлú·¢¹âÖÊÁϵÄÉè¼ÆºÏ³É¼°Æä´ÌÒý·¢¹âÏìÓ¦»úÖÆÑо¿£¬£¬£¬¹ú¼Ò»ù½ðÖØµãÏîÄ¿(51733010), 2018.1-2022.12£¬£¬£¬ÏîÄ¿ÈÏÕæÈË.

4. Îȹ̸ßЧµÄȺ¼¯ÓÕµ¼Èȼ¤»îÑÓ³ÙÓ«¹âÖÊÁϼ°Æä·Ç²ôÔÓÆ÷¼þÖÆ±¸Òªº¦ÊÖÒÕ£¬£¬£¬¹ã¶«Ê¡¿Æ¼¼ÍýÏëÖØ´óרÏî(2015B090913003)£¬£¬£¬2015.5-2019.12£¬£¬£¬ÏîÄ¿ÈÏÕæÈË.

5. ¸ß¹ÌÌå·¢¹âЧÂʵÄË«¹â×ÓÒý·¢Óлú³¤Óà»ÔÖÊÁϵÄÉè¼ÆºÏ³É¼°ÆäÔÚÉúÎï³ÉÏñÖеÄÓ¦ÓÃÑо¿£¬£¬£¬¹ú¼Ò»ù½ðÃæÉÏÏîÄ¿(51973239)£¬£¬£¬2020.1-2023.12£¬£¬£¬ÏîÄ¿ÈÏÕæÈË.

6. Óлúµ¥·Ö×Ӱ׹⻯ºÏÎïµÄ¿É¿ØºÏ³É¼°ÆäË«·¢Éä¹âÆ×µÄ¡°·Ö×ÓÒÅ´«¡±»úÖÆÑо¿ £¬£¬£¬¹ú¼Ò»ù½ðÃæÉÏÏîÄ¿(21672267)£¬£¬£¬2017.1-2020.12£¬£¬£¬ÏîÄ¿ÈÏÕæÈË.

7. ¾ßÓÐȺ¼¯ÓÕµ¼·¢¹âÐÔÄܵÄÈȼ¤»îÑÓ³ÙÓ«¹âÖÊÁϵĺϳÉÓëÐÔÄÜÑо¿£¬£¬£¬¹ú¼Ò»ù½ðÃæÉÏÏîÄ¿(51473185)£¬£¬£¬2015.1-2019.1£¬£¬£¬ÏîÄ¿ÈÏÕæÈË.

8. ѹÖ±äɫȺ¼¯ÓÕµ¼·¢¹âÖÊÁϵĺϳÉÓëÐÔÄÜ£¬£¬£¬¹ú¼Ò»ù½ðÃæÉÏÏîÄ¿(51173210)£¬£¬£¬2012.1-2015.12£¬£¬£¬ÏîÄ¿ÈÏÕæÈË.

9. º¬Èý±½ÒÒÏ©½á¹¹µÄ¸ßÈÈÎȹÌÐÔÐÂÐÍȺ¼¯ÓÕµ¼·¢¹âÖÊÁϵĺϳÉÓëÐÔÄÜ£¬£¬£¬¹ú¼Ò»ù½ðÃæÉÏÏîÄ¿(51073177)£¬£¬£¬2011.1-2013.12£¬£¬£¬ÏîÄ¿ÈÏÕæÈË.

10. ÐÂÐÍÒº¾§ÐÔÓлú±¡Ä¤¾§Ìå¹ÜÖÊÁϵĺϳÉÓëÐÔÄÜÑо¿£¬£¬£¬¹ú¼Ò»ù½ðÃæÉÏÏîÄ¿(50773096)£¬£¬£¬2008.1-2010.12£¬£¬£¬ÏîÄ¿ÈÏÕæÈË.

11. º¬Èý±½ÒÒÏ©½á¹¹µÄȺ¼¯ÓÕµ¼ÔöÇ¿·¢¹âÖÊÁϵĺϳÉÓëÐÔÄÜ£¬£¬£¬¹ã¶«Ê¡»ù½ðÖØµãÏîÄ¿(S2011020002156)£¬£¬£¬2011.10-2014.10£¬£¬£¬ÏîÄ¿ÈÏÕæÈË.

½ÒÏþѧÊõÂÛÎÄ

1. Huangjun Deng, Gaoyu Li, Haozhi Xie, Zhan Yang, Zhu Mao, Juan Zhao, Zhiyong Yang*, Yi Zhang, Zhenguo Chi*. Dynamic ultra-long room temperature phosphorescence enabled by amorphous molecular ¡°triplet exciton pump¡± for encryption with temporospatial resolution. Angew. Chem. Int. Ed., 2024, 63, e202317631.

2. Yaohui Liang, Chao Xu, Huaqing Zhang, Shiying Wu, Jian-An Li, Yifan Yang, Zhu Mao, Suilian Luo, Cong Liu, Guang Shi*, Fengqiang Sun, Zhenguo Chi*, Bingjia Xu*. Color-tunable dual-mode organic afterglow from classical aggregation-caused quenching compounds for white-light-manipulated anti-counterfeiting. Angew. Chem. Int. Ed., 2023, 62, e202217616

3. Junru Chen, Xiaojie Chen, Lei Cao, Huangjun Deng, Zhenguo Chi*, Bin Liu*. Synergistic generation and accumulation of triplet excitons for efficient ultralong organic phosphorescence. Angew. Chem. Int. Ed., 2022, 61, e202200343.

4. Yifan Yang, Yaohui Liang, Yitao Zheng, Jian-An Li, Shiying Wu, Huaqing Zhang, Tepeng Huang, Suilian Luo, Cong Liu, Guang Shi*, Fengqiang Sun, Zhenguo Chi*, Bingjia Xu*. Efficient and color-tunable dual-mode afterglow from large-area and flexible polymer-based transparent films for anti-counterfeiting and information encryption. Angew. Chem. Int. Ed., 2022, 61, e202201820.

5. Yingxiao Mu, Yanyan Liu, Haiyan Tian, Depei Ou, Li Gong, Juan Zhao, Yanping Huo, Yi Zhang, Zhiyong Yang*, Zhenguo Chi*. Sensitive and repeatable photoinduced luminescent radicals from a simple organic crystal. Angew. Chem. Int. Ed., 2021, 60, 6367-6371.

6. Wenlang Li, Qiuyi Huang, Zhan Yang, Xiaoyue Zhang, Dongyu Ma, Juan Zhao,* Chao Xu,* Zhu Mao, Yi Zhang, Zhenguo Chi*. Activating versatile mechanoluminescence in organic host-guest crystals by controlling exciton transfer. Angew. Chem. Int. Ed., 2020, 59, 22645-22651.

7. Zhan Yang, Chao Xu, Wenlang Li, Zhu Mao,* Xiangyu Ge, Qiuyi Huang, Huangjun Deng, Juan Zhao,* Feng Long Gu, Yi Zhang, Zhenguo Chi*. Boosting quantum efficiency of ultralong organic phosphorescence up to 52% via intramolecular halogen bonding. Angew. Chem. Int. Ed., 2020, 59, 17451-17455.

8. Wenlang Li, Qiuyi Huang, Zhu Mao, Juan Zhao*, Huiyan Wu, Junru Chen, Zhan Yang, Yang Li, Zhiyong Yang*, Yi Zhang, Matthew P. Aldred, Zhenguo Chi*. Selective expression of chromophores in a single molecule: soft organic crystals exhibiting full-colour tunability and dynamic triplet-exciton behaviours. Angew. Chem. Int. Ed., 2020, 59, 3739-3745.

9. Wenlang Li, Qiuyi Huang, Zhu Mao, Qi Li, Long Jiang, Zongliang Xie, Rui Xu, Zhiyong Yang*, Juan Zhao, Tao Yu, Yi Zhang*, Matthew. P. Aldred, Zhenguo Chi*. Alkyl chain introduction: in©\situ solar©\renewable organic colorful mechanoluminescence materials. Angew. Chem. Int. Ed., 2018, 57, 12727-12732.

10. Seyed Mohammad Ali Fateminia, Zhu Mao, Shidang Xu, Zhiyong Yang*, Zhenguo Chi*, Bin Liu*. Organic nanocrystals with bright red persistent room-temperature phosphorescence for biological applications. Angew. Chem. Int. Ed., 2017, 56, 12160-12164.

11. Zhu Mao, Zhiyong Yang, Yingxiao Mu, Yi Zhang*, Yi-Fan Wang, Zhenguo Chi*, Chang- Cheng Lo, Siwei Liu, Alan Lien, Jiarui Xu* Linearly tunable emission colors obtained from a fluorescent-phosphorescent dual-emission compound by mechanical stimuli. Angew. Chem. Int. Ed., 2015, 54, 6270-6273.

12. Shidang Xu, Tingting Liu, Yingxiao Mu, Yi-Fan Wang, Zhenguo Chi*, Chang-Cheng Lo, Siwei Liu, Yi Zhang*, Alan Lien, Jiarui Xu*. An organic molecule with asymmetric structure exhibiting aggregation-induced emission, delayed fluorescence, and mechanoluminescence. Angew. Chem. Int. Ed., 2015, 54, 874 -878.

13. Zongliang Xie, Chengjian Chen, Shidang Xu, Jun Li, Yi Zhang*, Siwei Liu, Jiarui Xu, Zhenguo Chi*. White-light emission strategy of single organic compound with aggregation-induced emission and delayed fluorescence properties. Angew. Chem. Int. Ed., 2015, 54, 7181-7184.

14. Zhiyong Yang, Zhu Mao, Xuepeng Zhang, Depei Ou, Yingxiao Mu, Yi Zhang*, Cunyuan Zhao, Siwei Liu, Zhenguo Chi*, Jiarui Xu, Yuan-Chun Wu, Po-Yen Lu, Alan Lien, Martin R. Bryce. Intermolecular electronic coupling of organic units for efficient persistent room-temperature phosphorescence. Angew. Chem. Int. Ed., 2016, 55, 2181-2185.

15. Qiuyi Huang, Xiaoxian Chen, Wenlang Li, Zhiyong Yang, Yi Zhang, Juan Zhao*, Zhenguo Chi*. Local dynamics in a hydrogen-bonded organic framework for adaptive guest accommodation with programmable luminescence. Chem, 2023, 9, 1241-1254.

16. Qiuyi Huang, Wenlang Li, Zhu Mao, Hao Zhang, Yang Li, Dongyu Ma, Huiyan Wu, Juan Zhao*, Zhiyong Yang, Yi Zhang, Li Gong*, Matthew P. Aldred, Zhenguo Chi*. Dynamic molecular weaving craft in a two-dimensional hydrogen-bonded organic framework. Chem, 2021, 7, 1321-1332.

17. Zhu Chen, Xiaojie Chen, Dongyu Ma, Zhu Mao*, Juan Zhao*, Zhenguo Chi*. Synergetic conformational regulations in ground and excited states for realizing stimulus-responsive and wide-tuning room-temperature phosphorescence. J. Am. Chem. Soc., 2023, 145, 16748-16759.

18. Yuyuan Wang, Zhiwei Ma, Junrong Pu, Danman Guo, Gaoyu Li, Zhu Chen, Shi-Jian Su, Huangjun Deng*, Juan Zhao*, Zhenguo Chi*. Multiple-resonance thermally activated delayed emitters through multiple peripheral modulation to enable efficient blue OLEDs at high doping levels. Aggregate, 2024, DOI: 10.1002/agt2.585

19. Zhongyu Li, Kexin Fu, Huangjun Deng, Kaixuan Nie, Zhe Pan, Zhu Mao*, Juan Zhao, Gang Li, Pengli Zhu, Zhenguo Chi*, Rong Sun*. Polymeric ultralong organic phosphorescence with excellent humidity and temperature resistance via hydrophobic effect. Aggregate, 2024, 5, e440.

20. Gaoyu Li, Junrong Pu, Zhan Yang, Huangjun Deng, Yanyan Liu, Zhu Mao*, Juan Zhao*, Shi-Jian Su, Zhenguo Chi*. High-efficiency thermally activated delayed fluorescence materials via a shamrock-shaped design strategy to enable OLEDs with external quantum to efficiency over 38%. Aggregate, 2023, 4, e382.

21. Miao Luo, Juan Zhao, Yanyan Liu, Zhu Mao*, Sheng Wang*, Zhenguo Chi*. All-visible-light triggered photoswitch of dithienylethene derivatives with molecular conformation Changes excess 5 ?. Adv. Funct. Mater., 2023, 33, 2211009.

22. Zongliang Xie, Qiuyi Huang, Tao Yu*, Leyu Wang, Zhu Mao, Wenlang Li, Zhan Yang, Yi Zhang*, Siwei Liu, Jiarui Xu, Zhenguo Chi*, and Matthew P. Aldred. Hydrogen- bonding-assisted intermolecular charge transfer: a new strategy to design single-component white-light-emitting materials. Adv. Funct. Mater., 2017, 27, 1703918.

23. Fanlin Tu, Zecong Ye, Yingxiao Mu*, Xuwei Luo, Liyun Liao, Dehua Hu, Shaomin Ji, Zhiyong Yang, Zhenguo Chi*, Yanping Huo*. Photoinduced radical persistent luminescence in semialiphatic polyimide system with temperature and humidity resistance. Adv. Sci., 2023, 10, 2301017.

24. Zhiwei Ma, Yuyuan Wang, Junrong Pu, Gaoyu Li, Zhu Mao, Juan Zhao, Zhiyong Yang,Shi-Jian Su, Zhenguo Chi*. Versatile thermally activated delayed fluorescence emitters via non-conjugated extension strategy enabling OLEDs with efficiency over 37%. Adv. Optical Mater., 2023, 2302386

25. Xiangyu Ge, Gaoyu Li, Danman Guo, Zhan Yang*, Zhu Mao, Juan Zhao*, Zhenguo Chi*. A strategy for designing multifunctional TADF materials for high-performance non-doped OLEDs by intramolecular halogen bonding. Adv. Optical Mater., 2024,12, 2302535

26. Wen Wang, Tian Qin, Haiyang Wang, Zhiyong Yang*, Zhenguo Chi*, Xie Zhou*. Asymmetric ADA¡äD-A¡ä¡ä molecular configuration type-I photosensitizer with two complementary reactive oxygen species for efficient imaging and photodynamic therapy. Adv. Optical Mater., 2024, 12£¬£¬£¬2301403.

27. Miao Luo, Juan Zhao, Yanyan Liu, Long Jiang, Sheng Wang*, Zhenguo Chi*. A new biphotochromic fluorescent switch based on dithienylethene and triphenylethylene: synthesis, crystal structure, and optical waveguide. Adv. Optical Mater., 2022, 10, 2201195.

28. Yanyan Liu, Jiaji Yang, Zhu Mao,* Dongyu Ma, Yuyuan Wang, Juan Zhao,* Shi-Jian Su,* and Zhenguo Chi*. Donor or Acceptor: Molecular Engineering Based on dibenzo[a,c]phenazine Backbone for Highly Efficient Thermally-Activated Delayed Fluorescence Organic Light-Emitting Diodes. Adv. Optical Mater., 2023, 11, 2201695.

29. Zhibo Sun, Huangjun Deng, Zhu Mao*, Zhongyu Li, Kaixuan Nie, Kexin Fu, Jifeng Chen, Juan Zhao, Pengli Zhu*, Zhenguo Chi*, Rong Sun. Shape-memorable, self-healable, recyclable, and full-color emissive ultralong organic phosphorescence vitrimers with exchangeable covalent bonds. Adv. Optical Mater., 2022, 10, 2201558.

30. Junru Chen, Haiyan Tian, Zhan Yang, Juan Zhao*, Zhiyong Yang, Yi Zhang*, Matthew P. Aldred, Zhenguo Chi*. A multi-stimuli-responsive molecule with responses to light, oxygen, and mechanical stress through flexible tuning of triplet excitons. Adv. Optical Mater., 2021, 9, 2001550.

31. Bing Li, Zhan Yang, Wenqi Gong, Xinhui Chen, Duncan W. Bruce, Shengyue Wang, Huili Ma*, Yu Liu, Weiguo Zhu, Zhenguo Chi*, Yafei Wang*. Intramolecular through-space charge transfer based TADF-active multifunctional emitters for high efficiency solution-processed OLED. Adv. Optical Mater., 2021, 9, 2100180.

32. Junru Chen, Tao Yu*, Eethamukkala Ubba, Zongliang Xie, Zhiyong Yang, Yi Zhang*, Siwei Liu, Jiarui Xu, Matthew P. Aldred, Zhenguo Chi*. Achieving dual-emissive and time-dependent evolutive organic afterglow by bridging molecules with weak intermolecular hydrogen bonding. Adv. Optical Mater., 2019, 7, 1801593.

33. Siyang Jiang, Danman Guo, Faxu Lin, Jinzheng Chen, Yiling Miao, Huahua Huang*, Jian-Wen Yang, Wei Qin*, Zhenguo Chi*. Time-dependent multicolor afterglow from dual persistent luminescence of fluorescence and phosphorescence in a UV-cured polyurethane matrix. ACS Mater. Lett., 2024, 6, 1371¨C1379.

34. Tian Qin, Fei Wu*, Dongyu Ma, Yingxiao Mu, Xiaojie Chen, Zhiyong Yang, Linna Zhu*, Yi Zhang, Juan Zhao*, Zhenguo Chi*. Asymmetric sulfonyldibenzene-based hole-transporting materials for efficient perovskite solar cells: inspiration from organic thermally-activated delayed fluorescence molecules. ACS Mater. Lett., 2020, 2, 1093?1100.

35. Yanyan Liu, Jiaji Yang, Zhu Mao*, Xiaojie Chen, Zhan Yang, Xiangyu Ge, Xiaomei Peng, Juan Zhao*, Shi-Jian Su*, Zhenguo Chi*. Asymmetric thermally activated delayed fluorescence emitter for highly efficient red/near-infrared organic light-emitting diodes. ACS Appl. Mater. Interfaces, 2022, 14, 33606-33613.

36. Jianling Chen, Xiaojie Chen, Qiuyi Huang, Wenlang Li, Qiaoxi Yu, Longji Zhu, Tianwen Zhu, Siwei Liu*, Zhenguo Chi*. Amphiphilic polymer-mediated aggregation-induced emission nanoparticles for highly sensitive organophosphorus pesticide biosensing. ACS Appl. Mater. Interfaces, 2019, 11, 32689-32696.

37. Xiaojie Chen, Zhan Yang, Wenlang Li, Zhu Mao*, Juan Zhao*, Yi Zhang, Yuan-Chun Wu, Shibo Jiao, Yang Liu, Zhenguo Chi*. Nondoped red fluorophores with hybridized local and charge-transfer state for high-performance fluorescent white organic light-emitting diodes. ACS Appl. Mater. Interfaces, 2019, 11, 39026-39034.

38. Yuzhao Yang, Xiaofeng Lin, Wenlang Li,Jiemei Ou,Zhongke Yuan,Fangyan Xie,Wei Hong,Dingshan Yu,Yuguang Ma, Zhenguo Chi*,Xudong Chen*. One-pot large-scale synthesis of carbon quantum dots: efficient cathode interlayers for polymer solar cells. ACS Appl. Mater. Interfaces, 2017, 9, 14953?14959

39. Dongyu Ma, Jun-Xing Zhong, Xuhui Zhuang, Chao Xu, Wen Wang, Haiyang Wang, Juan Zhao*, Zhiyong Yang, Yi Zhang*, Zhenguo Chi*. Perovskite grain fusion strategy via controlled methylamine gas release for efficient and stable formamide-based perovskite solar cells. Chem. Eng. J., 2023, 475, 146267.

40. Xuhui Zhuang, Dongyu Ma, Gaoyu Li, Zhiyong Yang, Zishou Zhang*, Juan Zhao*, Zhenguo Chi*. Size-matched dicarboxylic acid for buried interfacial engineering in high-performance perovskite solar cells. Chem. Eng. J., 2023, 460, 141705.

41. Huangjun Deng, Zhan Yang, Gaoyu Li, Dongyu Ma, Zongliang Xie, Wenlang Li, Zhu Mao, Juan Zhao, Zhiyong Yang*, Yi Zhang, Zhenguo Chi*. Dynamic organic mechanoluminescence (ML): The roles of mechano-induced conformational isomer and energy transfer from ML to photoluminescence (PL). Chem. Eng. J., 2022, 438, 135519.

42. Maoyang Jian, Zicun Song, Xiaojie Chen, Jiang Zhao*, Bingjia Xu*, Zhenguo Chi*. Afterglows from the indolocarbazole families. Chem. Eng. J.,2022, 429, 132346.

43. Zhan Yang, Xiangyu Ge, Wenlang Li, Zhu Mao*, Xiaojie Chen, Chao Xu, Feng Long Gu, Yi Zhang, Juan Zhao*, Zhenguo Chi*. From para to ortho: incarnating conventional TADF molecules into AIE-TADF molecules for highly-efficient non-doped OLEDs. Chem. Eng. J., 2022, 442, 136219.

44. Maoyang Jian, Zicun Song, Xiaojie Chen, Jiang Zhao*, Bingjia Xu*, Zhenguo Chi*. Afterglows from the indolocarbazole families. Chem. Eng. J., 2022, 429, 132346.

45. Yanyan Liu, Jiaji Yang, Zhu Mao*, Yuyuan Wang, Juan Zhao*, Shi-Jian Su*, Zhenguo Chi*. Isomeric thermally activated delayed fluorescence emitters for highly efficient organic light-emitting diodes. Chem. Sci., 2023, 14, 1551-1556.

46. Tiantian Liu, Xiaojie Chen, Juan Zhao*, Weichun Wei, Zhu Mao*, William Wu, Shibo Jiao, Yang Liu, Zhiyong Yang, Zhenguo Chi*. Hybridized local and charge-transfer excited state fluorophores enabling organic light-emitting diodes with record high efficiencies close to 20%. Chem. Sci., 2021, 12£¬£¬£¬5171-5176.

47. Junru Chen, Xiaojie Chen, Yanyan Liu, Yang Li, Juan Zhao, * Zhiyong Yang, Yi Zhang*, Zhenguo Chi*. A color-tunable single-component luminescent molecule with multiple emission centers. Chem. Sci., 2021, 12, 9201-9206.

48. Zhan Yang, Zhu Mao, Chao Xu, Xiaojie Chen, Juan Zhao*, Zhiyong Yang, Yi Zhang*, William Wu, Shibo Jiao, Yang Liu, Matthew Phillip Aldred, Zhenguo Chi*. A sterically hindered asymmetric D-A-D' thermally activated delayed fluorescence emitter for highly-efficient non-doped organic light-emitting diodes. Chem. Sci., 2019, 10, 8129-8134.

49. Zongliang Xie, Tao Yu*, Junru Chen, Eethamukkala Ubba, Leyu Wang, Zhu Mao, Tongtong Su, Yi Zhang*, Matthew P. Aldred, Zhenguo Chi*. Weak interactions but potent effect: tunable mechanoluminescence by adjusting intermolecular C-H¡Á¡Á¡Á¦Ð interactions. Chem. Sci., 2018, 9, 5787-5794.

50. Tao Yu, Depei Ou, Zhiyong Yang*, Qiuyi Huang, Zhu Mao, Junru Chen, Yi Zhang*, Siwei Liu, Jiarui Xu, Martin R. Bryce, Zhenguo Chi*. The HOF structures of nitrotetraphenylethene derivatives provide new insights into the nature of AIE and a way to design mechanoluminescent materials. Chem. Sci., 2017, 8, 1163-1168.

51. Bingjia Xu, Haozhong Wu, Junru Chen, Zhan Yang, Zhiyong Yang*, Yuan-Chun Wu, Yi Zhang*, Chongjun Jin, Po-Yen Lu, Zhenguo Chi*, Siwei Liu, Jiarui Xu, Matthew Aldred. White-light emission from a single heavy atom-free molecule with room temperature phosphorescence, mechanochromism and thermochromism. Chem. Sci., 2017, 8, 1909-1914.

52. Bingjia Xu, Yingxiao Mu, Zhu Mao, Zongliang Xie, Haozhong Wu, Yi Zhang*, Chongjun Jin, Zhenguo Chi*, Siwei Liu, Jiarui Xu, Yuan-Chun Wu, Po-Yen Lu, Alan Lien, Martin R. Bryce*. Achieving remarkable mechanochromism and white-light emission with thermally activated delayed fluorescence through the molecular heredity principle. Chem. Sci., 2016, 7, 2201-2206.

53. Depei Ou, Tao Yu, Zhiyong Yang, Tiangang Luan*, Zhu Mao, Yi Zhang*, Siwei Liu, Jiarui Xu, Zhenguo Chi*, Martin R Bryce. Combined aggregation induced emission (AIE), photochromism and photoresponsive wettability in simple dichloro-substituted triphenylethylene derivatives. Chem. Sci., 2016, 7, 5302 - 5306.

54. Bingjia Xu, Wenlang Li, Jiajun He, Sikai Wu, Qiangzhong Zhu, Zhiyong Yang*, William Wu, Yi Zhang*, Chongjun Jin, Po-Yen Lu, Zhenguo Chi*, Siwei Liu, Jiarui Xu, Martin R Bryce. Achieving very bright mechanoluminescence from purely organic luminophores with aggregation-induced emission by crystal design. Chem. Sci., 2016, 7, 5307 - 5312.

55. Bingjia Xu, Jiajun He, Yingxiao Mu, Qiangzhong Zhu, Sikai Wu, Yifan Wang, Yi Zhang*, Chongjun Jin, Changcheng Lo, Zhenguo Chi*, Alan Lien, Siwei Liu, Jiarui Xu* Very bright mechanoluminescence and remarkable mechanochromism using a tetraphenylethene derivative with aggregation-induced emission. Chem. Sci., 2015, 6, 3236-3241.

56. Danman Guo, Yuyuan Wang, Jinzheng Chen, Yifeng Cao, Yiling Miao, Huahua Huang*, Zhenguo Chi*, Zhiyong Yang*. Intrinsic persistent room temperature phosphorescence derived from 1H-benzo[f]indole itself as a guest. Chin. Chem. Lett., 2023, 34, 107882.

57. Wenlang Li, Qiuyi Huang, Zhu Mao, Xiaoyi He, Dongyu Ma, Juan Zhao* , Jacky W. Y. Lam , Yi Zhang, Ben Zhong Tang*, Zhenguo Chi*. A dish-like molecular architecture for dynamic ultralong room-temperature phosphorescence through reversible guest accommodation. Nat. Commun., 2022, 13, 7423.

58. Qiuyi Huang, Wenlang Li, Zhan Yang, Juan Zhao*, Yang Li, Zhu Mao, Zhiyong Yang, Siwei Liu*, Yi Zhang, Zhenguo Chi*. Achieving bright mechanoluminescence in hydrogen-bonded organic framework by polar molecular rotor incorporation. CCS Chem., 2022, 4, 1643-1653.

59. Xiaojie Chen, Dongyu Ma, Tiantian Liu, Zhu Chen, Zhan Yang, Juan Zhao*, Zhiyong Yang, Yi Zhang, Zhenguo Chi*. Hybridized local and charge-transfer excited-state fluorophores through the regulation of the donor¨Cacceptor torsional angle for highly efficient organic light-emitting diodes. CCS Chem., 2022, 4, 1284-1294.

60. Dongyu Ma, Wenlang Li, Xiaojie Chen, Zhan Yang, Juan Zhao*, Zhiyong Yang, Yi Zhang*, Zhenguo Chi*. An effective strategy of combining surface passivation and secondary grain growth for highly efficient and stable perovskite solar cells. Small, 2021, 17, 2100678.

61. Jianling Chen, Xiaojie Chen, PoWang, Siwei Liu*, Zhenguo Chi*. Aggregation-induced emission luminogen@manganese dioxide core-shell nanomaterial-based paper analytical device for equipment-free and visual detection of organophosphorus pesticide. J. Hazard. Mater., 2021, 413, 125306.

62. Tian Qin, Fei Wu*, Yingxiao Mu, Yubo Long, Linna Zhu*, Juan Zhao* Zhenguo Chi*. Sulfonyldibenzene-based hole-transporting materials for efficient n-i-p perovskite solar cells. Sci. Chin. Chem., 2021, 64, 127-133.

63. Zhonghui Chen,* Ziyu Lv, Zirong Lin, Jun Chen, Yifang Zhang, Cunli Wang, Guangyan Qing, Yifeng Sun*, Zhenguo Chi*. A methylation-inspired mesoporous coordination polymer for identification and removal of organic pollutants in aqueous solutions. J. Mater. Chem. B, 2021,9, 638-647.

64. Zhonghui Chen,* Ziyu Lv, Yifeng Sun, Zhenguo Chi*, Guangyan Qing*. Recent advancements in polyethyleneimine-based materials and their biomedical, biotechnology, and biomaterial applications. J. Mater. Chem. B, 2020, 8, 2951-2973.

65. Zhan Yang, Eethamukkala Ubba, Qiuyi Huang, Zhu Mao*, Wenlang Li, Junru Chen, Juan Zhao*, Yi Zhang, Zhenguo Chi*. Enabling dynamic ultralong organic phosphorescence in molecular crystals by synergy of intramolecular and intermolecular interactions. J. Mater. Chem. C, 2020, 8, 7384-7392.

66. Weichun Wei, Zhan Yang, Xiaojie Chen, Tiantian Liu, Zhu Mao,* Juan Zhao*, Zhenguo Chi*. Modulation of ¦Ð-linkers in asymmetric thermally activated delayed fluorescence molecules enabling high performance OLEDs. J. Mater. Chem. C, 2020,8, 3663-3668.

67. Jiayue Chen, Dongyu Ma, Xiaojie Chen, Guangfu Li, Juan Zhao*, Dongxia Zhu*, Zhenguo Chi*. Inorganic perovskite engineering through incorporation of carboxylic acid containing ligand for performance enhancement in perovskite light-emitting diodes. J. Mater. Chem. C, 2019, 7, 14141-14147.

68. Sunil Kumar Baburao Mane, Yingxiao Mu, Eethamukkala Ubba, Zhiyong Yang*, Juan Zhao£¬£¬£¬ Zhenguo Chi*. Tuning the organic persistent room-temperature phosphorescence through aggregated states. J. Mater. Chem. C, 2019, 7, 15219-15224.

69. Sunil Kumar Baburao Mane, Yingxiao Mu, Zhiyong Yang*, Eethamukkala Ubba, Naghma Shaishta*, Zhenguo Chi*. A TADF compound with highly contrast mechano-responsive fluorescence on/off switching for both sequential and combinational logic gates. J. Mater. Chem. C, 2019, 7, 3522-3528.

70. Zongliang Xie, Tongtong Su, Eethamukkala Ubba, Huangjun Deng, Zhu Mao, Tao Yu*,Ting Zheng, Yi Zhang*, Siwei Liu, Zhenguo Chi*. Achieving tunable dual-emissive and high-contrast mechanochromic materials by manipulating steric hindrance effects. J. Mater. Chem. C, 2019, 7, 3300-3305.

71. Junru Chen, Naveed Ur Rahman, Zhu Mao, Juan Zhao*, Zhiyong Yang, Siwei Liu, Yi Zhang*, Zhenguo Chi*. Achievement of persistent and efficient organic roomtemperature phosphorescence with temperatureresponse by adjusting the proportion of excited-state configurations in coupled molecules. J. Mater. Chem. C, 2019, 7, 8250-8254.

72. Juan Zhao, Zhihe Chi, Yi Zhang*, Zhu Mao, Zhiyong Yang*, Eethamukkala Ubba, Zhenguo Chi*. Recent progress in mechanofluorochromism of cyanoethylene derivatives with aggregation-induced emission. J. Mater. Chem. C, 2018, 6, 6327 - 6353.

73. Juan Zhao, Xiaojie Chen, Zhan Yang, Zhihe Chi, Zhiyong Yang*, Yi Zhang*, Jiarui Xu, Zhenguo Chi*, Matthew P. Aldred. Highly-efficient fully non-doped white organic light-emitting diodes consisting entirely of thermally activated delayed fluorescence emitters J. Mater. Chem. C, 2018, 6, 3226-3232.

74. Juan Zhao, Zhan Yang, Xiaojie Chen, Zongliang Xie, Tiantian Liu, Zhihe Chi, Zhiyong Yang*, Yi Zhang*, Matthew P. Aldred, Zhenguo Chi*. Efficient triplet harvesting in fluorescence-TADF hybrid warm-white organic light-emitting diodes with a fully non-doped device configuration. J. Mater. Chem. C, 2018, 6, 4257-4264.

75. Leyu Wang, Tao Yu*, Zongliang Xie, Xiaojie Chen, Zhan Yang, Yi Zhang, * Matthew P. Aldred, Zhenguo Chi*. Design, synthesis and photochromism studies of thienyl containing triarylethylene derivatives and their applications in real-time photoresponsive surfaces. J. Mater. Chem. C, 2018, 6, 8832-8838.

76. Qiuyi Huang, Tao Yu, Zongliang Xie, Wenlang Li, Leyu Wang, Siwei Liu, Yi Zhang*, Zhenguo Chi*, Jiarui Xu, Matthew Phillip Aldred. Hydrogen-bonding assisted loosely packing crystals of a diaminomaleonitrile-modified tetraphenylethene compound and their photo- and mechano-responsive properties. J. Mater. Chem. C, 2017, 5, 11867-11872.

77. Qingyun Lu, Xiaofang Li, Jun Li, Zhiyong Yang*, Bingjia Xu, Zhenguo Chi*, Jiarui Xu, Yi Zhang*. Influence of cyano groups on the properties of piezofluorochromic aggregation-induced emission enhancement compounds derived from tetraphenylvinyl-capped ethane. J. Mater. Chem. C, 2015, 3, 1225-1234.

78. Naveed Ur Rahman, Wasim Ullah Khan, Wenlang Lia Shaukat Khan, Javid Khan, Shizhao Zheng*, Tongtong Su, Juan Zhao*, Matthew P. Aldred, Zhenguo Chi*. Simultaneous enhancement in performance and UV-light stability of organic-inorganic perovskite solar cells using a samarium-based down conversion material. J. Mater. Chem. A, 2019, 7, 322-329.

79. Naveed Ur Rahman, Wasim Ullah Khan, Shaukat Khan, Xiaojie Chen, Javid Khan, Juan Zhao*£¬£¬£¬Zhiyong Yang£¬£¬£¬Mingmei Wu*£¬£¬£¬Zhenguo Chi*. A promising europium-based down conversion material: organicinorganic perovskite solar cells with high photovoltaic performance and UV-light stability. J. Mater. Chem. A, 2019, 7, 6467-6474.

80. Juan Zhao, Xiaojie Chen, Zhan Yang, Tiantian Liu, Zhiyong Yang*, Yi Zhang*, Jiarui Xu, Zhenguo Chi*. Highly-efficient doped and nondoped organic light-emitting diodes with external quantum efficiencies over 20% from a multifunctional green thermally activated delayed fluorescence emitter. J. Phys. Chem. C, 2019, 123, 1015-1020.

81. Eethamukkala Ubba, Tao Yu*, Zhiyong Yang, Juan Zhao, Leyu Wang, Zhenguo Chi*. Organic mechanoluminescence with aggregation-induced emission. Chem. Asian J., 2018, 13, 3106-3121.

82. Juan Zhao, Zhihe Chi, Zhan Yang, Xiaojie Chen, Michael S. Arnold*, Yi Zhang*, Jiarui Xu, Zhenguo Chi*, Matthew P. Aldred. Recent developments of truly stretchable thin film electronic and optoelectronic devices. Nanoscale, 2018, 10, 5764-5792.

83. Zhiyong Yang, Zhihe Chi, Zhu Mao, Yi Zhang*, Siwei Liu, Juan Zhao*, Matthew P. Aldred, Zhenguo Chi*. Recent advances in mechano-responsive luminescence of tetraphenyl- ethylene derivatives with aggregation-induced emission properties. Mater. Chem. Front., 2018, 2, 861-890.

84. Xiaojie Chen, Zhan Yang, Zongliang Xie, Juan Zhao*, Zhiyong Yang, Yi Zhang, * Matthew. P. Aldred, Zhenguo Chi*. An efficient yellow thermally activated delayed fluorescence emitter with universal applications in both doped and non-doped organic light-emitting diodes. Mater. Chem. Front., 2018, 2, 1017-1023.

85. Juan Zhao, Zhihe Chi, Zhiyong Yang*, Zhu Mao, Yi Zhang*, Eethamukkala Ubba, Zhenguo Chi*. Recent progress in mechanofluorochromism of distyrylanthracene derivatives with aggregation-induced emission. Mater. Chem. Front., 2018, 2, 1595 ¨C 1608

86. Tao Yu, Depei Ou, Leyu Wang, Shizhao Zheng, Zhiyong Yang, Yi Zhang*, Zhenguo Chi*, Siwei Liu, Jiarui Xu, Matthew Phillip Aldred. A new approach to switchable photochromic materials by combining photochromism and piezochromism together in an AIE-active molecule. Mater. Chem. Front., 2017, 1, 1900-1904.

87. Shizhao Zheng, Wenlang Li, Tongtong Su, Fangyan Xie, Jian Chen, Zhiyong Yang, Yi Zhang*, Siwei Liu, Matthew P. Aldred, King Young Wong*, Jiarui Xu, Zhenguo Chi*. Metal oxide CrOx as a promising bilayer electron transport material for enhancing the performance stability of planar perovskite solar cells. Sol. RRL, 2018, 1700245.

88. Zhiyong Yang, Zhu Mao, Zongliang Xie,Yi Zhang*, Siwei Liu, Juan Zhao*, Jiarui Xu, Zhenguo Chi*, Matthew P. Aldred. Recent advances in organic thermally activated delayed fluorescence materials. Chem. Soc. Rev., 2017, 46, 915-1016.

׍ָ

1. Mechanochromic fluorescent materials: phenomena, materials and applications. Jiarui Xu, Zhenguo Chi (edited by), RSC publishing, 2014.

2. Aggregation-induced emission: applications (Ben Zhong Tang, Anjun Qin£¬£¬£¬ edited by), Chapter 3: mechanochromic aggregation-induced emission materials (Zhenguo Chi, Jiarui Xu), Wiley, 2013.

3. Aggregation induced emission: materials and applications (Ben Zhong Tang, et al. edited by), Chapter 17: Mechano-responsive AIE luminogens (Zhiyong Yang, Zhu Mao, Tao Yu, Yi Zhang*, Siwei Liu, Jiarui Xu, Zhenguo Chi*), ACS Books, 2016.

4. Handbook of aggregation-induced emission (Youhong Tang, Ben Zhong Tang, edited by), Chapter 5: Mechanoluminescence materials with aggregation-induced emission (Zhiyong Yang, Juan Zhao, Eethamukkala Ubba, Zhan Yang, Yi Zhang, Zhenguo Chi*), John Wiley & Sons Ltd, 2022.

5. Aggregation-induced emission (AIE): A practical guide (Jianwei Xu, Ming Hui Chua, Ben Zhong Tang. edited by)£¬£¬£¬Chapter 9: AIE luminogens exhibiting thermally activated delayed fluorescence (Xiaojie Chen, Xiangyu Ge, Zhan Yang, Juan Zhao, Zhiyong Yang, Yi Zhang, Zhenguo Chi*), Elsevier, 2022.

6. Á¦´Ì¼¤ÏìӦȺ¼¯ÓÕµ¼·¢¹âÖÊÁÏ£¬£¬£¬³ØÕñ¹ú¡¢¡¢¡¢ÕԾ꣬£¬£¬¿ÆÑ§³öÊéÉ磬£¬£¬2024.

ÉêÇë¼°ÊÚȨרÀû

1. ÕÅÒÕ¡¢¡¢¡¢Ç®³¬¡¢¡¢¡¢Ðí¼ÒÈ𡢡¢¡¢±´ÈóöΡ¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢³ØÕñ¹ú. ¾ßÓеͽéµç³£ÊýµÄ¾ÛºÏÎï¼°½µµÍ¾ÛºÏÎï½éµç³£ÊýµÄ·Ö×ӽṹÉè¼ÆÒªÁì. ÉêÇëÈÕ£º2017.02.16 ÉêÇëºÅ£º201710083465.1£¨ÊÚȨ¹«¿ªºÅCN107057065B£©

2. ÕÅÒÕ¡¢¡¢¡¢ÕÅ¿­¡¢¡¢¡¢ÓàÇÅϪ¡¢¡¢¡¢Ðí¼ÒÈ𡢡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢ÁõËÄί. Ò»ÖÖË®/Ñõ×è¸ô¾ÛºÏÎï»ù¸´ºÏÖÊÁϼ°ÆäÖÆ±¸ÒªÁìºÍÓ¦ÓÃ. ÉêÇëÈÕ£º2017.02.16 ÉêÇëºÅ£º201710083615.9 £¨ÊÚȨ¹«¿ªºÅ201710083615.9£©

3. ÕÅÒÕ¡¢¡¢¡¢ÖÜÖñÐÀ¡¢¡¢¡¢ÑîæÃæÃ¡¢¡¢¡¢ÃÏ«h¡¢¡¢¡¢Ðí¼ÒÈ𡢡¢¡¢ÁõËÄί¡¢¡¢¡¢³ØÕñ¹ú. Ò»ÖÖ¸ßÐÔÄÜ·¢¹â¾Ûõ£Ñǰ·¼°ÆäÖÆ±¸ÒªÁìºÍÓ¦ÓÃ. ÉêÇëÈÕ£º2017.06.23 ÉêÇëºÅ£º201710486718.X

4. ÕÅÒÕ¡¢¡¢¡¢ÖÜÖñÐÀ¡¢¡¢¡¢ÑîæÃæÃ¡¢¡¢¡¢ÃÏ«h¡¢¡¢¡¢Ðí¼ÒÈ𡢡¢¡¢ÁõËÄί¡¢¡¢¡¢³ØÕñ¹ú. Ò»ÖÖ¾ßÓÐȺ¼¯ÓÕµ¼·¢¹â»ùÍŵĶþ°·»¯ºÏÎï¼°ÆäÖÆ±¸ÒªÁìºÍÓ¦ÓÃ. ÉêÇëÈÕ£º2017.06.23 ÉêÇëºÅ£º201710487490.6 £¨ÊÚȨ¹«¿ªºÅCN107188812B£©

5. ÕÅÒÕ¡¢¡¢¡¢Ç®³¬¡¢¡¢¡¢Ðí¼ÒÈ𡢡¢¡¢±´ÈóöΡ¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢³ØÕñ¹ú. Ò»Öֵͽéµç³£ÊýµÄ·Ç¾§Ì¬¾ÛºÏÎï¼°ÆäÖÆ±¸ÒªÁìºÍÓ¦ÓÃ. ÉêÇëÈÕ£º2017.08.02. ÉêÇëºÅ£º201710650751.1 £¨ÊÚȨ¹«¿ªºÅCN107501573B£©

6. ÕÅÒÕ£¬£¬£¬Ç®³¬£¬£¬£¬Ðí¼ÒÈ𣬣¬£¬±´ÈóöΣ¬£¬£¬ÁõËÄί£¬£¬£¬³ØÕñ¹ú. Polymer having low dielectric constant and method for designing molecular structure for reducing dielectric constant of polymer. ÉêÇëÈÕ£º2018.02.01 ÉêÇëºÅ£ºJP2019543885A

7. Ðí¼ÒÈ𡢡¢¡¢·¶Õñ¹ú¡¢¡¢¡¢ÕÅÒÕ¡¢¡¢¡¢Ç®³¬¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢³ØÕñ¹ú. Ò»ÖÖ¾Ûõ£Ñǰ·ÖÊÁÏÐÔÄÜÄ£ÄâÒªÁì. ÉêÇëÈÕ£º2018.06.15 ÉêÇëºÅ£º201810621115.0

8. ÕÅÒÕ¡¢¡¢¡¢ÖìÁú»ù¡¢¡¢¡¢ÓàÇÅϪ¡¢¡¢¡¢ÁõÌÚ¡¢¡¢¡¢ÂíÅô·É¡¢¡¢¡¢½¯ÐÇ¡¢¡¢¡¢Ðí¼ÒÈ𡢡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢ÁõËÄί. ÓÃÏËά¸¨Öú³ÉÐÎÖÆÔ쳬±¡ÌմɵÄÒªÁì¼°ÆäÖÆ³ÉÆ·ºÍÓ¦ÓÃ. ÉêÇëÈÕ£º2019.01.23 ÉêÇëºÅ£º201910063548.3£¨ÊÚȨ¹«¿ªºÅCN109694256B£©

9. ÕÅÒÕ¡¢¡¢¡¢ÖìÁú»ù¡¢¡¢¡¢ÓàÇÅϪ¡¢¡¢¡¢ÁõÌÚ¡¢¡¢¡¢ÁºÉÜÉ­¡¢¡¢¡¢½¯ÐÇ¡¢¡¢¡¢Ñî²®Èå¡¢¡¢¡¢Ðí¼ÒÈ𡢡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢ÁõËÄί. µç×è·¨²âÊÔ±¡Ä¤ÆøÌå͸¹ýÂʵÄ×°ÖÃ. ÉêÇëÈÕ£º2019.01.28 ÉêÇëºÅ£º201920163249.2

10. ÕÅÒÕ¡¢¡¢¡¢½­Ñ©Ë«¡¢¡¢¡¢ÁúÓí²¨¡¢¡¢¡¢³Âîø½ò¡¢¡¢¡¢½¯ÐÇ¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢Ðí¼ÒÈð. Ò»ÖÖÐÂÐͽṹ¶þ°·µ¥Ìå¡¢¡¢¡¢»ùÓڸõ¥ÌåµÄ¾ÛºÏÎïÖÊÁϼ°ÆäÖÆ±¸ÒªÁìºÍÓ¦ÓÃ. ÉêÇëÈÕ£º2022.10.26 ÉêÇëºÅ£º202211328333.8

11. ÕÅÒÕ¡¢¡¢¡¢öÄÂ×¾ý¡¢¡¢¡¢ÁúÓí²¨¡¢¡¢¡¢Îâ»ÛìÍ¡¢¡¢¡¢½¯ÐÇ¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢Ðí¼ÒÈð. Ò»ÖÖµ¥°··â¶ËµÄ¸ßÐÔÄܾÛõ£Ñǰ··¢¹âÖÊÁÏ¡¢¡¢¡¢ÖƱ¸ÒªÁì¼°ÆäÓ¦ÓÃ. ÉêÇëÈÕ£º2019.11.07 ÉêÇëºÅ£º201911082477.8£¨ÊÚȨ¹«¿ªºÅCN110922593B£©

12. ÕԾꡢ¡¢¡¢¸ßÊ«æÂ¡¢¡¢¡¢³ØÕñ¹ú. Ò»ÖַDzôÔÓÓлúµçÖ·¢¹âÆ÷¼þ¼°ÆäÖÆ±¸ÒªÁì. ÉêÇëÈÕ£º2022.03.23, Öйú·¢Ã÷רÀû£¬£¬£¬202210291843.6.

13. ÕÅÒÕ¡¢¡¢¡¢ÓàÇÅϪ¡¢¡¢¡¢±´ÈóöΡ¢¡¢¡¢ÖìÁú»ù¡¢¡¢¡¢½¯ÐÇ¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢Ðí¼ÒÈð. Ò»ÖÖ¾ßÓвã״ש-ǽ½á¹¹µÄ×èȼÖÊÁϼ°ÆäÖÆ±¸ÒªÁì. ÉêÇëºÅ£º202111232879.9 ÉêÇëÈÕ£º2021.10.22£¨ÊÚȨ¹«¿ªºÅCN113929951B£©

14. ÕÅÒÕ¡¢¡¢¡¢Ö£Î¬ÎÄ¡¢¡¢¡¢Áõ´¨¡¢¡¢¡¢ÁºÐ¢´È¡¢¡¢¡¢½¯ÐÇ¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢Ðí¼ÒÈð. Ò»ÖÖ¶þ°·µ¥Ìå¡¢¡¢¡¢±¾Õ÷Ð͸߽éµçµÍÏûºÄ¾Ûõ£Ñǰ·¼°ÆäÖÆ±¸ÒªÁìÓëÓ¦ÓÃ. ÉêÇëºÅ£º202111112089.7 ÉêÇëÈÕ£º2021.09.23£¨ÊÚȨ¹«¿ªºÅCN113754571B£©

15. ÕÅÒÕ¡¢¡¢¡¢Àî˧Õé¡¢¡¢¡¢Ö£ÖDz©¡¢¡¢¡¢½¯ÐÇ¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢Ðí¼ÒÈð. Ò»ÖÖ¸ßʯī»¯Ê¯Ä«ºñĤ¼°ÆäÖÆ±¸ÒªÁì. ÉêÇëºÅ£ºCN202110621290.1 ÉêÇëÈÕ£º2021.06.03

16. ÌﺣÑà¡¢¡¢¡¢ÑîÖ¾Ó¿¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢¹ùµ¤Âü¡¢¡¢¡¢ÁÖ·¢Ðñ. »ùÓÚ½çÃæÁ׹⹲ÕñÄÜÁ¿×ªÒƹ¹½¨½üºìÍâÓлúÊÒγ¤ÊÙÃü·¢¹âÖÊÁÏ. ÉêÇëºÅ£º202110049681.0 ÉêÇëÈÕ£º2021.03.12£¨ÊÚȨ¹«¿ªºÅCN112812050B£©

17. ³ÂÖлۡ¢¡¢¡¢³ØÕñ¹ú. »ùÓÚ¶à¿×½ðÊô-ÓлúÂçºÏÎïÖÊÁϵÄÓÐÉ«ÎïÖÊ¿ìËÙ¼ì²âÊÔÖ½¼°Æä¼ì²âÒªÁìºÍÓ¦ÓÃ. ÉêÇëºÅ£ºCN202110038008.7 ÉêÇëÈÕ£º2021.01.12

18. ÕÅÒÕ¡¢¡¢¡¢ÀèÂõ¿¡¡¢¡¢¡¢½¯ÐÇ¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢Ðí¼ÒÈð. ¡°È«¾Ûõ£Ñǰ·¡±»ìÏý»ùÖÊÆøÌåÊèɢĤ¼°ÆäÖÆ±¸ÒªÁìÓëÓ¦ÓÃ. ÉêÇëºÅ£º202011091412.2,ÉêÇëÈÕ£º2020.10.13£¨ÊÚȨ¹«¿ªºÅCN112354381B£©

19. ÕÅÒÕ¡¢¡¢¡¢ÓàÇÅϪ¡¢¡¢¡¢ÖìÁú»ù¡¢¡¢¡¢ÁõÌÚ¡¢¡¢¡¢½¯ÐÇ¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢Ðí¼ÒÈð. Ò»Öַ±´¿Ç״ŨÃܽṹµÄ¸ß×è¸ô¾Ûõ£Ñǰ·¸´ºÏ±¡Ä¤¡¢¡¢¡¢ÖƱ¸ÒªÁì¼°Ó¦ÓÃ. ÉêÇëºÅ£º2020104231636ÉêÇëÈÕ£º2020.05.19 £¨ÊÚȨ¹«¿ªºÅCN111499913B£©

20. ÕÅÒÕ¡¢¡¢¡¢Àî˧Õé¡¢¡¢¡¢Ö£ÖDz©¡¢¡¢¡¢½¯ÐÇ¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢Ðí¼ÒÈð. Ò»ÖÖ¸ßʯ¾Ûõ£Ñǰ·»ùʯīºñĤ¼°ÆäÖÆ±¸ÒªÁì. ÉêÇëºÅ£º2020101833272ÉêÇëÈÕ£º2020.03.16 £¨ÊÚȨ¹«¿ªºÅCN111470876B£©

21. ÕÅÒÕ¡¢¡¢¡¢ÁúÓí²¨¡¢¡¢¡¢Îâ»ÛìÍ¡¢¡¢¡¢ÖÜÖñÐÀ¡¢¡¢¡¢½¯ÐÇ¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢Ðí¼ÒÈð. Ò»ÖÖ¶þ°·µ¥Ìå¼°ÆäÖÆ±¸ÒªÁì¡¢¡¢¡¢¾Ûõ£Ñǰ·¼°ÆäÖÆ±¸ÒªÁìºÍÓ¦ÓÃ. ÉêÇëºÅ£º2020104235228ÉêÇëÈÕ£º2020.05.19£¨ÊÚȨ¹«¿ªºÅCN111471036B£©

22. Ö£ÖDz©¡¢¡¢¡¢ÕÅÒÕ¡¢¡¢¡¢ÓÚÓ±¡¢¡¢¡¢À¡¢¡¢¡¢Ç®³¬¡¢¡¢¡¢½¯ÐÇ¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢Ðí¼ÒÈð. Ò»ÖÖÏËάÔöÇ¿µÄï®Àë×Óµç³Ø±¡Ä¤¼°ÆäÖÆ±¸ÒªÁì. ÉêÇëºÅ£º2020101844489ÉêÇëÈÕ£º2020.03.17

23. ÕÅÒÕ¡¢¡¢¡¢öÄÂ×¾ý¡¢¡¢¡¢ÁúÓí²¨¡¢¡¢¡¢Îâ»ÛìÍ¡¢¡¢¡¢½¯ÐÇ¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢Ðí¼ÒÈð. Ò»ÖÖ°×¹âLEDÓÃÓ«¹â¾Ûõ£Ñǰ··â×°Ìå¼°Æä·â×°ÒªÁì. ÉêÇëºÅ£º2020101643668ÉêÇëÈÕ£º2020.03.11

24. ÕÅÒÕ¡¢¡¢¡¢ÎâÓýÄÏ¡¢¡¢¡¢Ã«Öñ¡¢¡¢¡¢ÑîÕ¿¡¢¡¢¡¢½¯ÐÇ¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢ÑîÖ¾Ó¿¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢Ðí¼ÒÈð. Ò»ÖÖº¬õ£Ñǰ·½á¹¹µÄÓлúÊÒÎÂÁ×¹âÖÊÁÏ¡¢¡¢¡¢ÖƱ¸ÒªÁì¼°ÆäÓ¦ÓÃ. ÉêÇëºÅ£º2019110834765ÉêÇëÈÕ£º2019.11.07

25. ÕÅÒÕ¡¢¡¢¡¢Îâ»ÛìÍ¡¢¡¢¡¢ÁúÓí²¨¡¢¡¢¡¢³Â«hç÷¡¢¡¢¡¢½¯ÐÇ¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢Ðí¼ÒÈð. Ò»ÖÖº¬±½²¢¶ñßòºÍßÇßò½á¹¹µÄ¶þ°·µ¥Ìå¼°ÆäÖÆ±¸ÒªÁìºÍÓ¦ÓÃ. ÉêÇëºÅ£º2019113989537ÉêÇëÈÕ£º2019.12.30 £¨ÊÚȨ¹«¿ªºÅCN111138424B£©

26. ÕÅÒÕ¡¢¡¢¡¢Îâ»ÛìÍ¡¢¡¢¡¢ÁúÓí²¨¡¢¡¢¡¢³Â«hç÷¡¢¡¢¡¢½¯ÐÇ¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢Ðí¼ÒÈð. Ò»ÖÖº¬±½²¢¶ñßòºÍßÇßò½á¹¹µÄ¾Ûõ£Ñǰ·¼°ÆäÖÆ±¸ÒªÁìºÍÓ¦ÓÃ. ÉêÇëºÅ£º2019113989950ÉêÇëÈÕ£º2019.12.30 £¨ÊÚȨ¹«¿ªºÅCN111116911B£©

27. ÕÅÒÕ¡¢¡¢¡¢ÁõÌÚ¡¢¡¢¡¢ÓàÇÅϪ¡¢¡¢¡¢ÖìÁú»ù¡¢¡¢¡¢½¯ÐÇ¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢Ðí¼ÒÈð. Ò»ÖÖ¾Ûõ£Ñǰ·×è¸ô±¡Ä¤ÖÊÁϼ°ÆäÖÆ±¸ÒªÁìºÍÓ¦ÓÃ. ÉêÇëºÅ£º2019110824585ÉêÇëÈÕ£º2019.11.07 £¨ÊÚȨ¹«¿ªºÅCN110938305B£©

28. ÕÅÒÕ¡¢¡¢¡¢ÖìÁú»ù¡¢¡¢¡¢ÓàÇÅϪ¡¢¡¢¡¢ÁõÌÚ¡¢¡¢¡¢ÁºÉÜÉ­¡¢¡¢¡¢½¯ÐÇ¡¢¡¢¡¢Ñî²®Èå¡¢¡¢¡¢Ðí¼ÒÈ𡢡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢ÁõËÄί. µç×è·¨²âÊÔ±¡Ä¤ÆøÌå͸¹ýÂʵÄ×°Öü°ÆäÖÆ×÷¡¢¡¢¡¢²âÊÔÒªÁì. ÉêÇëºÅ£º2019100805183ÉêÇëÈÕ£º2019.01.28

29. ÕÅÒÕ¡¢¡¢¡¢ÖìÁú»ù¡¢¡¢¡¢ÓàÇÅϪ¡¢¡¢¡¢ÁõÌÚ¡¢¡¢¡¢ÂíÅô·É¡¢¡¢¡¢½¯ÐÇ¡¢¡¢¡¢Ðí¼ÒÈ𡢡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢ÁõËÄί. ÓÃÏËά¸¨Öú³ÉÐÎÖÆÔ쳬±¡²£Á§¡¢¡¢¡¢³¬±¡ÌմɵÄÒªÁì¼°ÆäÖÆ³ÉÆ·ºÍÓ¦ÓÃ. ÉêÇëºÅ£º2019100635483ÉêÇëÈÕ£º2019.01.23

30. ÕÅÒÕ¡¢¡¢¡¢ÖìÁú»ù¡¢¡¢¡¢ÓàÇÅϪ¡¢¡¢¡¢ÁõÌÚ¡¢¡¢¡¢ÂíÅô·É¡¢¡¢¡¢½¯ÐÇ¡¢¡¢¡¢Ðí¼ÒÈ𡢡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢ÁõËÄί. Ôڸ߷Ö×ÓĤÉÏÉճɲ£Á§²ãÖÆ±¸¸´ºÏĤµÄÒªÁì¡¢¡¢¡¢¸´ºÏĤ¼°ÆäÓ¦ÓÃ. ÉêÇëºÅ£º2019100635568ÉêÇëÈÕ£º2019.01.23 £¨ÊÚȨ¹«¿ªºÅCN109824931B£©

31. ÕÅÒÕ¡¢¡¢¡¢»ÆÎÄÐã¡¢¡¢¡¢öÄÂ×¾ý¡¢¡¢¡¢ÁúÓí²¨¡¢¡¢¡¢ÖÜÖñÐÀ¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢Ðí¼ÒÈð. Ò»ÖÖ¾ßÓйâÖ±äÉ«ÐÔÄܵľÛõ£Ñǰ·¼°ÆäÖÆ±¸ÒªÁìºÍÓ¦ÓÃ. ÉêÇëºÅ£º2018112670676ÉêÇëÈÕ£º2018.10.29£¨ÊÚȨ¹«¿ªºÅCN109503837B£©

32. ÓÚÌΡ¢¡¢¡¢Ð»×ÚÁ¼¡¢¡¢¡¢ÍõÀÖÓî¡¢¡¢¡¢ËÕͮͮ¡¢¡¢¡¢µË»Ê¿¡¡¢¡¢¡¢Ö£Í¦¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢ÕÅÒÕ¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢Ðí¼ÒÈð. Ò»ÖÖº¬·Ôàçຶþ±½ÍªÀà·¢¹âÖÊÁϼ°ÆäºÏ³ÉÒªÁìºÍÓ¦ÓÃ. ÉêÇëºÅ£º201811035590.6 ÉêÇëÈÕ£º2018.9.6£¨ÊÚȨ¹«¿ªºÅCN108949158B£©

33. Ö£ÊÀÕÑ¡¢¡¢¡¢Naveed Ur Rahman£¨ÄÉάµÂ.ÎÚ¶ûÀ­Âü£©¡¢¡¢¡¢ËÕͮͮ¡¢¡¢¡¢ÑîÖ¾Ó¿¡¢¡¢¡¢ÓÚÌΡ¢¡¢¡¢ÕԾꡢ¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢ÕÅÒÕ¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢Ðí¼ÒÈð. Ò»ÖÖÒÔÏÂת»»ÖÊÁϽçÃæÐÞÊεÄÌ«ÑôÄÜµç³Ø¼°ÆäÖÆ±¸ÒªÁì. ÉêÇëºÅ£º201810980620.4 ÉêÇëÈÕ£º2018.8.27

34. л×ÚÁ¼¡¢¡¢¡¢ÓÚÌΡ¢¡¢¡¢ÍõÀÖÓî¡¢¡¢¡¢ËÕͮͮ¡¢¡¢¡¢µË»Ê¿¡¡¢¡¢¡¢Ö£Í¦¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢ÕÅÒÕ¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢Ðí¼ÒÈð. Ò»ÖÖÁ¦Ö·¢¹âÆ÷¼þ¼°ÆäÖÆ±¸ÒªÁì. ÉêÇëºÅ£º201811004066.2 ÉêÇëÈÕ£º2018.8.30£¨ÊÚȨ¹«¿ªºÅCN109307566B£©

35. ÍõÀÖÓî¡¢¡¢¡¢ÓÚÌΡ¢¡¢¡¢ÐíÈñ¡¢¡¢¡¢Ð»×ÚÁ¼¡¢¡¢¡¢ÑîÖ¾Ó¿¡¢¡¢¡¢Ö£ÊÀÕÑ¡¢¡¢¡¢ÕԾꡢ¡¢¡¢ÁõËÄί¡¢¡¢¡¢ÕÅÒÕ¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢Ðí¼ÒÈð. ÈýÂ±ËØÈ¡´úÈý±½ÒÒÏ©Àà¹âÖ±äÉ«ÖÊÁϼ°ÆäºÏ³ÉÒªÁìºÍÓ¦ÓÃ. ÉêÇëºÅ£º201810234162.x ÉêÇëÈÕ£º2018.3.21£¨ÊÚȨ¹«¿ªºÅCN108424346B£©

36. ÑîÕ¿;?ëÖñ;?ÕÔ¾ê;?³ÂÏþ½à;?ÑîÖ¾Ó¿;?ÓÚÌÎ;?Ö£ÊÀÕÑ;?ÁõËÄί;?ÕÅÒÕ;?³ØÕñ¹ú;?Ðí¼ÒÈð »ùÓÚ´óλ×è¿Õ¼äµçºÉ×ªÒÆµÄTADFÖÊÁϼ°ÆäºÏ³ÉÒªÁìÓëÓ¦Óà 2018103414401 2018.04.17£¨ÊÚȨ¹«¿ªºÅCN108484592B£©

37. ÓÚÌΡ¢¡¢¡¢ÍõÀÖÓî¡¢¡¢¡¢Õ²ÌìÑÄ¡¢¡¢¡¢Ð»×ÚÁ¼¡¢¡¢¡¢ÑîÖ¾Ó¿¡¢¡¢¡¢Ö£ÊÀÕÑ¡¢¡¢¡¢ÕԾꡢ¡¢¡¢ÁõËÄί¡¢¡¢¡¢ÕÅÒÕ¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢Ðí¼ÒÈð. º¬ß»à«ÑÜÉúÎïÈý·¼»ùÒÒÏ©Àà¹âÖ±äÉ«ÖÊÁϼ°ÆäºÏ³ÉÒªÁìºÍÓ¦ÓÃ. ÉêÇëºÅ£º201810234482.5 ÉêÇëÈÕ£º2018.3.21£¨ÊÚȨ¹«¿ªºÅCN108623543B£©

38. ³ÂÏþ½à¡¢¡¢¡¢ÑîÕ¿¡¢¡¢¡¢ÕԾꡢ¡¢¡¢ÑîÖ¾Ó¿¡¢¡¢¡¢ÓÚÌΡ¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢ÕÅÒÕ¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢Ðí¼ÒÈð. Ò»ÖÖÓлúµçÖ·¢¹âÆ÷¼þ¼°ÆäÖÆ±¸ÒªÁì. ÉêÇëºÅ£º201810178794.9 ÉêÇëÈÕ£º2018.3.5

39. ÀîÏȽÜ;?ÎâÔª¾ù;?ÂÀ²®Ñå;?Ðí±þ¼Ñ;?ÎâºÀÖÒ;?³Â¿¡Èç;?ÍõÀÖÓî;?³ØÕñ¹ú;?ÕÅÒÕ;?Ðí¼ÒÈð Óлúµ¥·Ö×Ó°×¹âÖÊÁϼ°ÆäÖÆ±¸ÒªÁìÓëOLEDÆ÷¼þ. ÉêÇëºÅ£º201711278799.0ÉêÇëÈÕ£º2017.12.06£¨ÊÚȨ¹«¿ªºÅCN108084150B£©

40. ÀîÏȽÜ;?ÎâÔª¾ù;?ÂÀ²®Ñå;?ÓÚÌÎ;?»ÆÇïÒä;?л×ÚÁ¼;?Å·µÂÅà;?ÍõÀÖÓî;?³ØÕñ¹ú;?ÕÅÒÕ;?ÁõËÄί;?Ðí¼ÒÈð Óлú·¢¹âÖÊÁϼ°ÆäÖÆ±¸ÒªÁìºÍÓ¦ÓÃ. ÉêÇëºÅ£º2017112797564 ÉêÇëÈÕ£º2017.12.06

41. ÍõÀÖÓî¡¢¡¢¡¢ÓÚÌΡ¢¡¢¡¢Ð»×ÚÁ¼¡¢¡¢¡¢»ÆÇïÒä¡¢¡¢¡¢Õ²ÌìÑÄ¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢ÕÅÒÕ¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢Ðí¼ÒÈð. º¬àç·ÔÑÜÉúÎïÈý·¼»ùÒÒÏ©Àà¹âÖ±äÉ«ÖÊÁϼ°ÆäºÏ³ÉÒªÁìÓëÓ¦ÓÃ. ÉêÇëºÅ£º201710729448.0 ÉêÇëÈÕ£º2017.8.23

42. ÕԾꡢ¡¢¡¢ÑîÕ¿¡¢¡¢¡¢³ÂÏþ½à¡¢¡¢¡¢ÑîÖ¾Ó¿¡¢¡¢¡¢ÓÚÌΡ¢¡¢¡¢Ö£ÊÀÕÑ¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢ÕÅÒÕ¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢Ðí¼ÒÈð. ÈáÐÔ¹âµç×ÓÆ÷¼þ·â×°±£»£»¤Ä¤¼°°üÀ¨¸Ã·â×°±£»£»¤Ä¤µÄÈáÐÔ¹âµç×ÓÆ÷¼þ. ÊÊÓÃÐÂÐÍרÀû£¬£¬£¬ÉêÇëºÅ£ºCN201720796614.4 ÉêÇëÈÕ£º2017.7.3

43. Íõ­Z¡¢¡¢¡¢»ÆÇïÒä¡¢¡¢¡¢Ð»×ÚÁ¼¡¢¡¢¡¢ÍõÀÖÓî¡¢¡¢¡¢ÑîÖ¾Ó¿¡¢¡¢¡¢ÕԾꡢ¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢ÕÅÒÕ¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢Ðí¼ÒÈð. Ò»Öְ׹ⷢÉäµÄÏËÎ¬ËØ»ùÓ«¹âĤ¼°ÆäÖÆ±¸ÒªÁì. ÉêÇëºÅ£ºCN201710364629.8 ÉêÇëÈÕ£º2017.5.22£¨ÊÚȨ¹«¿ªºÅCN107141682B£©

44. Íõ­Z¡¢¡¢¡¢»ÆÇïÒä¡¢¡¢¡¢Ð»×ÚÁ¼¡¢¡¢¡¢ÍõÀÖÓî¡¢¡¢¡¢ÑîÖ¾Ó¿¡¢¡¢¡¢ÕԾꡢ¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢ÕÅÒÕ¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢Ðí¼ÒÈð. Ò»ÖÖ·¢¹â¿É¿ØµÄÓ«¹â¾ÛºÏÎï¼°ÆäÖÆ±¸ÒªÁì. ÉêÇëºÅ£ºCN201710364121.8 ÉêÇëÈÕ£º 2017.5.22£¨ÊÚȨ¹«¿ªºÅCN107353361B£©

45. Íõ­Z¡¢¡¢¡¢»ÆÇïÒä¡¢¡¢¡¢Ð»×ÚÁ¼¡¢¡¢¡¢ÍõÀÖÓî¡¢¡¢¡¢ÑîÖ¾Ó¿¡¢¡¢¡¢ÕԾꡢ¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢ÕÅÒÕ¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢Ðí¼ÒÈð. Ò»ÖÖ¹âÖ±äÉ«ÏËÎ¬ËØ¼°ÆäÖÆ±¸ÒªÁì. ÉêÇëºÅ£ºCN201710364104.4 ÉêÇëÈÕ£º2017.5.22£¨ÊÚȨ¹«¿ªºÅCN107417794B£©

46. ÓÚÌΡ¢¡¢¡¢»ÆÇïÒä¡¢¡¢¡¢Ð»×ÚÁ¼¡¢¡¢¡¢ÍõÀÖÓî¡¢¡¢¡¢Ö£ÊÀÕÑ¡¢¡¢¡¢ÑîÖ¾Ó¿¡¢¡¢¡¢ÕԾꡢ¡¢¡¢ÁõËÄί¡¢¡¢¡¢ÕÅÒÕ¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢Ðí¼ÒÈð.Èýά¶à¿×³¬·Ö×ÓÓлú¹Ç¼ÜÖÊÁϼ°ÆäÖÆ±¸ÒªÁìºÍÓ¦ÓÃ. ÉêÇëºÅ£ºCN201710366111.8 ÉêÇëÈÕ£º2017.5.22 £¨ÊÚȨ¹«¿ªºÅCN107245148B£©

47. ÓÚÌΡ¢¡¢¡¢ÍõÀÖÓî¡¢¡¢¡¢»ÆÇïÒä¡¢¡¢¡¢Ð»×ÚÁ¼¡¢¡¢¡¢Ö£ÊÀÕÑ¡¢¡¢¡¢ÑîÖ¾Ó¿¡¢¡¢¡¢ÕԾꡢ¡¢¡¢ÁõËÄί¡¢¡¢¡¢ÕÅÒÕ¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢Ðí¼ÒÈð ´Ì¼¤ÏìÓ¦Èý±½ÒÒÏ©Àà¹âÖ±äÉ«ÖÊÁϼ°ÆäºÏ³ÉÒªÁìÓëÓ¦ÓÃ. ÉêÇëºÅ£ºCN201710374503.9 ÉêÇëÈÕ£º2017.5.24£¨ÊÚȨ¹«¿ªºÅCN107163080B£©

48. ËÕͮͮ¡¢¡¢¡¢ÀîÎÄÀÊ¡¢¡¢¡¢Ö£ÊÀÕÑ¡¢¡¢¡¢ÓÚÌΡ¢¡¢¡¢ÑîÖ¾Ó¿¡¢¡¢¡¢ÕԾꡢ¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢ÕÅÒÕ¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢Ðí¼ÒÈð. Ò»ÖÖÒÔ̼ÄÉÃ×µã½çÃæÐÞÊεĸÆîÑ¿óÌ«ÑôÄÜµç³Ø¼°ÆäÖÆ±¸ÒªÁì. ÉêÇëºÅ: CN201710188438.0 . ÉêÇëÈÕ: 2017.3.27

49. ÕԾꡢ¡¢¡¢ÑîÕ¿¡¢¡¢¡¢³ÂÏþ½à¡¢¡¢¡¢ÑîÖ¾Ó¿¡¢¡¢¡¢ÓÚÌΡ¢¡¢¡¢Ö£ÊÀÕÑ¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢ÕÅÒÕ¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢Ðí¼ÒÈð. Ò»ÖÖ¸ßÏÔɫָÊý°×¹âÓлúµçÖ·¢¹âÆ÷¼þ¼°ÆäÖÆ±¸ÒªÁì. ÉêÇëºÅ: CN201710217788.5. ÉêÇëÈÕ: 2017.4.1 £¨ÊÚȨ¹«¿ªºÅCN107123749B£©

50. ÕԾꡢ¡¢¡¢³ÂÏþ½à¡¢¡¢¡¢ÑîÕ¿¡¢¡¢¡¢ÑîÖ¾Ó¿¡¢¡¢¡¢ÓÚÌΡ¢¡¢¡¢Ö£ÊÀÕÑ¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢ÕÅÒÕ¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢Ðí¼ÒÈð. Ò»ÖַDzôÔÓ°×¹âÓлú·¢¹âÆ÷¼þ¼°ÆäÖÆ±¸ÒªÁì. ÉêÇëºÅ: CN201710273559.5. ÉêÇëÈÕ: 2017.4.24£¨ÊÚȨ¹«¿ªºÅCN107221603B£©

51. Ëﻪΰ¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢Ëβʷɡ¢¡¢¡¢²ÜÃñ¡¢¡¢¡¢½ªËÕ¿¡¡¢¡¢¡¢ÔøÏé±ó¡¢¡¢¡¢²ÌÍ®•F. Ò»ÖÖµ¥Ìå×é³É±ÈÀýÎȹ̵ÄÈÈÖÂÐÔÒº¾§¾Ûõ¥ÒÔ¼°ÆäÖÆ±¸ÒªÁìÓëÓ¦ÓÃ. ÉêÇëÈÕ£º2016.12.12 ÉêÇëºÅ£º201611141234.3£¨ÊÚȨ¹«¿ªºÅCN106750198B£©

52. ÕԾꡢ¡¢¡¢³ÂÏþ½à¡¢¡¢¡¢ÑîÕ¿¡¢¡¢¡¢ÑîÖ¾Ó¿¡¢¡¢¡¢ÓÚÌΡ¢¡¢¡¢Ö£ÊÀÕÑ¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢ÕÅÒÕ¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢Ðí¼ÒÈð. Ò»ÖÖ°×¹âÓлúµçÖ·¢¹âÆ÷¼þ¼°ÆäÖÆ±¸ÒªÁì. ÉêÇëºÅ: CN201610924595.9. ÉêÇëÈÕ: 2016.10.24 £¨ÊÚȨ¹«¿ªºÅCN106356464B£©

53. ³ØÕñ¹ú¡¢¡¢¡¢Ð»×ÚÁ¼¡¢¡¢¡¢ÓÚÌΡ¢¡¢¡¢»ÆÇïÒä¡¢¡¢¡¢Å·µÂÅà¡¢¡¢¡¢ÍõÀÖÓî¡¢¡¢¡¢Ã«Öñ¡¢¡¢¡¢Íõ¼ÒÇ¿¡¢¡¢¡¢ÑîÖ¾Ó¿¡¢¡¢¡¢ÕÅÒÕ¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢Ðí¼ÒÈð. º¬ÓÐ좵Ķþ±½ÍªÀàÓлú·¢¹âÖÊÁϼ°ÆäºÏ³ÉÒªÁìÓëÓ¦ÓÃ. ÉêÇëºÅ: CN201610914712.3. ÉêÇëÈÕ: 2016.10.20 £¨ÊÚȨ¹«¿ªºÅCN106565781B£©

54. ÕÅÒÕ¡¢¡¢¡¢ÖÜÖñÐÀ¡¢¡¢¡¢Ðí¼ÒÈ𡢡¢¡¢ÁõËÄί¡¢¡¢¡¢³ØÕñ¹ú. Ò»ÖÖÈáÐÔ·¢¹â¾Ûõ£Ñǰ·Ä¤¼°ÆäÖÆ±¸ÒªÁìºÍÓ¦ÓÃ.ÉêÇëºÅ: CN201610908456.7. ÉêÇëÈÕ: 2016.10.18 £¨ÊÚȨ¹«¿ªºÅCN106543719B£©

55. ÕÅÒÕ¡¢¡¢¡¢ÖÜÖñÐÀ¡¢¡¢¡¢Ðí¼ÒÈ𡢡¢¡¢ÁõËÄί¡¢¡¢¡¢³ØÕñ¹ú. Ò»ÖÖº¬1,2,4?Èýµªßò½á¹¹µÄ¶þ°·»¯ºÏÎï¼°ÆäÖÆ±¸ÒªÁìºÍÓ¦ÓÃ. ÉêÇëºÅ: CN201610903817.9. ÉêÇëÈÕ: 2016.10.18

56. Ö£ÊÀÕÑ¡¢¡¢¡¢ÀîÎÄÀÊ¡¢¡¢¡¢ÑîÖ¾Ó¿¡¢¡¢¡¢ÓÚÌΡ¢¡¢¡¢ÕԾꡢ¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢ÕÅÒÕ¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢Ðí¼ÒÈð. Ò»ÖÖÒÔÑõ»¯¸õΪµç×Ó´«Êä²ãµÄ¸ÆîÑ¿óÌ«ÑôÄÜµç³Ø¼°ÆäÖÆ±¸ÒªÁì. ÉêÇëºÅ: CN201610887439.X. ÉêÇëÈÕ: 2016.10.11

57. Ðí±þ¼Ñ¡¢¡¢¡¢Ð»×ÚÁ¼¡¢¡¢¡¢ÍõÀÖÓî¡¢¡¢¡¢Ã«Öñ¡¢¡¢¡¢ÁõæÃæÃ¡¢¡¢¡¢ÑîÖ¾Ó¿¡¢¡¢¡¢ÓÚÌΡ¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢ÕÅÒÕ¡¢¡¢¡¢ÁõËÄί¡¢¡¢¡¢Ðí¼ÒÈ𡢡¢¡¢ÎâÔª¾ù¡¢¡¢¡¢ÂÀ²®Ñå. ¾ßÓÐÈȼ¤»îÑÓ³ÙȺ¼¯ÓÕµ¼·¢¹âÐÔÄܵÄÓлú°×¹âÖÊÁϼ°ÆäºÏ³ÉÒªÁìÓëÓ¦ÓÃ. ÉêÇëºÅ: CN201610016414.2. ÉêÇëÈÕ: 2016.01.08 £¨ÊÚȨ¹«¿ªºÅCN105481794B£©

58. Ðí±þ¼Ñ¡¢¡¢¡¢ÄÂӢХ¡¢¡¢¡¢Ã«Öñ¡¢¡¢¡¢Ð»×ÚÁ¼¡¢¡¢¡¢³ØÕñ¹ú¡¢¡¢¡¢ÕÅÒÕ¡¢¡¢¡¢Ðí¼ÒÈ𡢡¢¡¢½ð³ç¾ý. »ùÓÚ¶þ±½í¿·Ô‡fຽṹµÄ²î³Ø³ÆÐÍÈȼ¤»îÑÓ³ÙȺ¼¯ÓÕµ¼·¢¹âÖÊÁϼ°ÆäºÏ³ÉÒªÁìºÍÓ¦ÓÃ. ÉêÇëºÅ: CN201510339101.6. ÉêÇëÈÕ: 2015.06.17 £¨ÊÚȨ¹«¿ªºÅCN105038764B£©

»ñ½±¼°ÉùÓþ

1. ÐÂÐÍÓлú·¢¹âÖÊÁϵÄÉè¼ÆºÏ³É¼°ÆäÁ¦´ÌÒý·¢¹âÏìÓ¦Ñо¿£¬£¬£¬2018Äê¶È¹ã¶«Ê¡×ÔÈ»¿ÆÑ§½±Ò»µÈ½±(µÚ1Íê³ÉÈË).

2. 2021ÄêµÚ16½ì¹ã¶«Ê¡¶¡Ó±¿Æ¼¼½±.

ÏÂÒ»Ìõ£ºÀîÓйð

¡¾¹Ø±Õ¡¿