个人信息

姓  名: 陶冶 性  別: 导师类型: 博士生导师
技术职称: 教授 电子邮箱: iamytao@njupt.edu.cn
学术型博士招生学科: (080300)光学工程
学术型硕士招生学科: (080500)材料科学与工程,(080300)光学工程
专业型硕士招生类别(领域): (085400)电子信息
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个人简介:

陶冶博士面向化学、材料以及信息科学对于新材料的需求,立足于高性能与新功能有机光电材料的创制,紧扣光电性质动态选择性调控中的关键科学问题,以动态响应型有机光电材料为研究对象,在深入研究分子结构-电子结构-凝聚态结构-激发态性质-光电性能的基础之上,建立其分子设计、材料结构和器件性能之间的内在关联性,提出电学性质选择性增强和激发态能级动态调控的共振工程概念以及三线态激子稳定的凝聚态结构动态调控方法,实现了光电性质的可控动态调节,重点对有机光电材料及其在发光显示与信息领域的应用进行深入系统研究,把有机显示材料与器件作为关键突破点,并开拓了长余辉材料在传感、加密以及安全打印领域的应用。近年来,申请人累计发表SCI论文57篇,其中以第一或第一通讯作者在Nat. Commun.J. Am. Chem. Soc.2篇)Sci. Adv.Angew. Chem. Int. Ed.2篇)ResearchAdv. Mater.3篇)Sci. China Chem.等发表论文28篇,3篇论文入选ESI高被引论文,受Wiley出版社邀请撰写英文专著一章,申请/授权中国发明专利7项。主持国家自然科学基金面上、青年和江苏省面上等项目7项,并获得江苏特聘教授(2020年)、江苏省六大人才高峰2019年)、博士后创新人才支持计划(2016年)等人才项目。获江苏省优秀博士毕业论文(1/1)、教育部高等学校科学研究优秀成果奖一等奖(7/8)、江苏省科学技术奖二等奖(5/8)、江苏省高等学校科学技术研究成果奖一等奖(3/5等奖项。

主持或参加科研项目及人才计划项目情况

[1]     国家自然科学基金委员会,优秀青年科学基金项目,2024-01月至2026-12月,200万元,在研,主持;

[2]     国家自然科学基金委员会,面上项目,2021-012024-1263万元,在研,主持;

[3]     江苏省教育厅,江苏特聘教授项目,2020-082023-08100万元,在研,主持;

[4]     江苏省人力资源和社会保障厅,江苏省六大高峰人才项目,2019-072022-1210万元,已结题,主持;

[5]     国家自然科学基金委员会,青年项目,2018-012020-1225万元,已结题,主持;

[6]     国家人力资源和社会保障部,博士后创新人才支持计划,2016-062018-0660万元,已结题,主持;

[7]     南京市人力资源和社会保障局,2019-052020-053万元,已结题,主持;

[8]     江苏省教育厅,江苏省高等学校自然科学面上项目, 2017-092019-08月,5万元,已结题,主持;

 

 








研究领域:

[1]     Gaozhan Xie, Mingjian Zeng, Xin Zhang, Ansheng Luo, Jingru Zhang, Fei He, Xin Wang, Yang Hu, Weiguang Wang, Yannan Xie, Huanhuan Li, Runfeng Chen* & Ye Tao*, Developing ultra-stable organic radical anions to achieve long persistent-luminescence for afterglow lighting, SCIENCE CHINA Materials 2023, just accepted.

[2]      Lan Yu, Zhisheng Gao, He Cheng, Xin Yan, Hengyu Cao, Guangyao Guo, Huanhuan Li*, Ping Li*, Runfeng Chen, Tao Ye*, Time-Dependent Colorful Circularly Polarized Organic Ultralong Room Temperature Phosphorescence from a Single-Component Chiral Molecule, Small 2023, 2303579.

[3]     Huanhuan Li, Xudong Xue, Yang Cao, He Cheng, Ansheng Luo, Ningning Guo, Hui Li, Gaozhan Xie, Tao Ye*, Runfeng Chen*,  Wei Huang*, Achieving Stimuli-Responsive Amorphous Organic Afterglow in Single-Component Copolymer Through Self-Doping, Journal of the American Chemical Society 2023, 145, 13, 7343–7351.

[4]     Ligang Xu, Wei Qiu, Ming Feng, Zuowei Liang, Wei Qian, Cefeng Zhou, Daiquan Zhang, Meicheng Li, Wenzhen Lv*, Ye Tao* and Runfeng Chen , Multifunctional Resonance Bridge-Mediated Dynamic Modulation of Perovskite Films For Enhanced Intrinsic Stability of Photovoltaics, Small 2023, 19(25), 2207226.

[5]     Zhang Xiao, Zeng Mingjian, Zhang Yewen, Zhang Chengyu, Gao Zhisheng, He Fei, Xue Xudong, Li Huanhuan, Li Ping, Xie Gaozhan, Zhang Xin, Guo NingNing, Cheng He, Luo Ansheng, Zhao Wei, Li Hui, Tao Ye*, Chen Runfeng*, Huang Wei*, Multicolor hyperafterglow from isolated fluorescence chromophores,  Nature Communications 2023, 14, 475.

[6]     Xie Gaozhan, Wang Jiangchao, Xue Xudong, Li Hui, Guo Ningning, Li Huanhuan, Wang Danbei, Li Mingguang*, Huang Wei*, Chen Runfeng*, Tao Ye*, Achieving Low Driving Voltage and High-Efficiency Afterglow Organic Light-Emitting Diodes through Host-Guest Doping,  Applied Physics Reviews 2022, 9, 031410.

[7]     Li Huanhuan, Liu Chang, Wang Xin, Wang Jiangchao, Li Ping, Xie Gaozhan, Jiang Yunbo, Chen Runfeng, Tao Ye*, Achieving balanced electrical performance of host material through dual N–P═O resonance linkage for efficient electroluminescence, ACS Applied Materials & Interfaces 2022, 14(22), 25834-25841.

[8]     Peng Hao, Xie Gaozhan, Cao Yang, Zhang Longyan, Yan Xi, Zhang Xiao, Miao Shihao, Tao Ye*, Li Huanhuan, Zheng Chao, Huang Wei*, Chen Runfeng*, On-demand modulating afterglow color of water-soluble polymers through phosphorescence FRET for multicolor security printing, Science Advances, 2022, 8, eabk2925.

[9]     Li Hui, Gu Jie, Wang Zijie, Wang Juan, He Fei, Li Ping, Tao Ye*, Li Huanhuan, Xie Gaozhan, Huang Wei*, Zheng Chao, Chen Runfeng*, Single-component color-tunable circularly polarized organic afterglow through chiral clusterization, Nature Communications, 2022, 13, 429.

[10]  Tao Ye*, Liu Chang, Xiang Yuan, Wang Zijie, Xue Xudong, Li Ping, Li Huanhuan, Xie Gaozhan, Huang Wei, Chen Runfeng, Resonance-induced stimuli-responsive capacity modulation of organic ultralong room temperature phosphorescence, Journal of the American Chemical Society, 2022, 144(15), 6946-6953.

[11]  Li Huanhuan, Liu Chang, Wang Xin, Wang Jiangchao, Li Ping, Xie Gaozhan, Jiang Yunbo, Chen Runfeng, Tao Ye*, Achieving balanced electrical performance of host material through dual N–P═O resonance linkage for efficient electroluminescence, ACS Applied Materials & Interfaces, 2022, DOI: 10.1021/acsami.2c02745.

[12]  Li Hui, Li Huanhuan, Wang Wu, Tao Ye*, Wang Shuang, Yang Qingqing, Jiang Yunbo, Zheng Chao, Huang Wei*, Chen Runfeng*. Stimuli-responsive circularly polarized organic ultralong room temperature phosphorescence. Angewandte Chemie International Edition, 2020, 59(12): 4756.

[13]  Tao Ye, Chen Runfeng*, Li Huanhuan, Yuan Jie, Wan Yifang, Jiang He, Chen Cailin, Si Yubing, Zheng Chao, Yang Baocheng, Xing Guichuan, Huang Wei*, Resonance-activated spin-flipping for efficient organic ultralong room-temperature phosphorescence, Advanced Materials, 2018, 30(44): 1803856.

[14]  Li Huanhuan, Jin Jibiao, Xiang Yuan, Zhang Ying, Tao Ye*, Li Mingguang, Xue Qin, Xie Guohua*, Huang Wei, Chen Runfeng*, Resonance hosts for high efficiency solution-processed blue and white electrophosphorescent devices, Science China Chemistry, 2020, 63(11), 1645.

[15]  Xu Zhourui, Jiang Yihang, Shen Yuanyuan, Tang Lele, Hu Zulu, Lin Guimiao, Law Wing-cheung, Ma Mingze, Dong Biqin, Yong Ken-tye, Xu Gaixia, Tao Ye*, Chen Runfeng*, Yang Chengbin*, A biocompatible photosensitizer with a high intersystem crossing efficiency for precise two-photon photodynamic therapy, Materials Horizons 2022, DOI: 10.1039/D1MH01869H.

[16]  Yan Xi, Peng Hao, Xiang Yuan, Wang Juan, Yu Lan, Tao Ye*, Li Huanhuan, Huang Wei*, Chen Runfeng*, Recent advances on host–guest material systems toward organic room temperature phosphorescence, Small 2022, 18(1), 2104073.

[17]  Li Mingguang, Gao Huan, Yu Longsheng, Tang Senlin, Peng Ying, Zheng Chao, Xu Ligang, Tao Ye*, Chen Runfeng*, Huang Wei, Simultaneously enhancing efficiency and stability of perovskite solar cells through crystal cross‐linking using fluorophenylboronic acid, Small 2021, 17(38), 2102090.

[18]  Li Huanhuan, Wang Yuzheng, Yu Lan, Liu Chang, Zhou Cefeng, Sun Sibing, Li Mingguang, Tao Ye*, Xie Gaozhan, Xu Hui*, Huang Wei, Chen Runfeng*, V-shaped triazine host featuring intramolecular non-covalent interaction for highly efficient white electroluminescent devices, Chemical Engineering Journal 2021, 425, 131487.

[19]  Li Hui, Li Huanhuan, Gu Jie, He Fei, Peng Hao, Tao Ye*, Tian Dan, Yang Qingqing, Li Ping, Zheng Chao*, Huang Wei, Chen Runfeng*, Fluorine-induced aggregate-interlocking for color-tunable organic afterglow with a simultaneously improved efficiency and lifetime, Chemical Science, 2021, 12, 3580.

[20]  Xie Gaozhan, Wang Jiangchao, Cao Yang, Xue Xudong, Zhang Xiao, Liu Chang, Li Huanhuan*, Tao Ye*, Chen Runfeng, Phosphine sulfide-based bipolar host materials for blue phosphorescent organic light-emitting diodes, Molecules 2021, 26(13), 4079.

[21]  Tang Lele, Zan Jie, Peng Hao, Yan Xi, Tao Ye*, Tian Dan, Yang Qingqing, Li Huanhuan, Chen Qiushui, Huang Wei*, Chen Runfeng*, X-ray excited ultralong room-temperature phosphorescence for organic afterglow scintillators, Chemical Communications, 2020, 56(88), 13559.

[22]  Tao Ye, Tang Lele, Wei Qi, Jin Jibiao, Hu Wenbo, Chen Runfeng, Yang Qingqing, Li Huanhuan, Li Ping, Xing Guichuan, Fan Quli, Zheng Chao, Huang Wei, Near-infrared-excitable organic ultralong phosphorescence through multiphoton absorption, Research, 2020, 2020, 2904928.

[23]  Li Huanhuan, Zhi Yibin, Dai Yizhong, Jiang Yunbo, Yang Qingqing, Li Mingguang, Li Ping, Tao Ye*, Li Hui, Huang Wei, Chen Runfeng*. Asymmetric thermally activated delayed fluorescence materials with aggregation-induced emission for high-efficiency organic light-emitting diodes. Frontiers in Chemistry, 2020, 8: 49.

[24]  Li Huanhuan, Li Hui, Zhi Yibin, Wang Jun, Tang Lele, Tao Ye*, Xie Guohua*, Zheng Chao, Huang Wei, Chen Runfeng*. Multiple σ–π Conjugated molecules with selectively enhanced electrical performance for efficient solution‐processed blue electrophosphorescence. Advanced Optical Materials, 2019, 7(24): 1901124.

[25]  Tao Ye, Koh Seewee, Yu Xuechao, Wang Chongwu, Liang Houkun, Zhang Ying, Li Hong*, Wang Qijie*. Surface group-modified MXene nano-flake doping of monolayer tungsten disulfides. Nanoscale Advances, 2019, 1(12): 4783-4789.

[26]  Li Huanhuan, Jiang Yunbo, Wang Jun, Zhi Yibin, Dai Yizhong, Tao Ye*, Li Mingguang, Chen Runfeng*, Zheng Chao, Huang Wei*. High triplet energy phosphine sulfide host materials with selectively modulated electrical performance for blue electrophosphorescence. ACS Sustainable Chemistry & Engineering, 2019, 7(18): 15723-15728.

[27]  Chen Zhicai, Li Huanhuan, Tao Ye*, Chen Lingfeng, Chen Cailin, Jiang He, Xu Shen, Zhou Xinhui*, Chen Runfeng*, Huang Wei. Tuning intramolecular conformation and packing mode of host materials through noncovalent interactions for High-Efficiency blue electrophosphorescence. ACS Omega, 2019, 4(5): 9129-9134.

[28]  Tao Ye, Yu Xuechao, Li Jiewei, Liang Houkun, Zhang Ying, Huang Wei, Wang Qijie*, Bright monolayer tungsten disulfide via exciton and trion chemical modulations, Nanoscale, 2018, 10(14): 6294-6299.

[29]  Jin Jibiao, Tao Ye, Jiang He, Chen Runfeng*, Xie Guohua*, Xue Qin, Tao Chen, Jin Lu, Zheng Chao, Huang Wei*, Star‐shaped boron‐containing asymmetric host materials for solution‐processable phosphorescent organic light‐emitting diodes, Advanced Science, 2018, 5(8): 1800292. 共同一作

[30]  Li Huanhuan, Tao Ye, Chen Runfeng*, Li Hui, Chen Lingfeng, Jiang Yunbo, Zheng Chao, Huang Wei*, Cost-effective synthesis of carbazole/triphenylsilyl host materials with multiple σ-π conjugation for blue phosphorescent organic light-emitting diodes, Dyes and Pigments, 2018, 151: 187-193. 共同一作

[31]  陶冶, 李欢欢, 陈润锋*, 黄维, 苯基磷氧衍生物在蓝光有机电致发光器件中的应用, 中国材料进展, 2017, 36(06): 432-441.

[32]  Tao Ye, Xu Lijia, Zhang Zhen, Chen Runfeng*, Li Huanhuan, Xu Hui*, Zheng Chao, Huang Wei*, Achieving optimal Self-Adaptivity for dynamic tuning of organic semiconductors through resonance engineering, Journal of the American Chemical Society, 2016, 138(30): 9655-9662.

[33]  Tao Ye, Guo Xin, Hao Lin, Chen Runfeng*, Li Huanhuan, Chen Yuehua, Zhang Xinwen*, Lai Wenyong*, Huang Wei*, A Solution-processed resonance host for highly efficient electrophosphorescent devices with extremely low efficiency roll-off, Advanced Materials, 2015, 27(43): 6939-6944.

[34]  Tao Ye, Yuan Kai, Chen Ting, Xu Peng, Li Huanhuan, Chen Runfeng*, Zheng Chao, Zhang Lei, Huang Wei*, Thermally activated delayed fluorescence materials towards the breakthrough of organoelectronics, Advanced Materials, 2014, 26(47): 7931-7958.

[35]  Tao Ye, Xiao Jianjian, Zheng Chao, Zhang Zhen, Yan Mingkuan, Chen Runfeng*, Zhou Xinhui, Li Huanhuan, An Zhongfu, Wang Zhixiang, Xu Hui*, Huang Wei*, Dynamically adaptive characteristics of resonance variation for selectively enhancing electrical performance of organic semiconductors, Angewandte Chemie International Edition, 2013, 52(40): 10491-10495.

 

l  专著

[1] Ye Tao, Runfeng Chen*, Huanhuan Li, Chao Zheng, Wei Huang*, Wiley-CH, Book chapter, 2018, ISBN: 9783527339006, 377-424.

 

l  授权发明专利

[1]     陶冶,李慧,陈润锋,李欢欢,黄维,一种刺激响应型有机长余辉材料及其制备方法和应用,中国,ZL2020107339125

[2]     陶冶,项渊,陈润锋,许利刚,吕文轩,一种基于N-P=X共振结构的新型空穴传输材料的制备和应用,中国,ZL202110364584.0

[3]     李欢欢,职怡缤,陶冶,陈润锋,蒋云波,基于咔唑单元为核心的新型芳基膦有机光电材料及其制备方法与应用,中国,ZL201910677228.7

[4]     陈润锋,黄维,陶冶,马力,一种含N-P=S共振结构的光电功能材料、制备方法及应用,2016,中国,ZL201410404987.3

 

l  个人荣誉

[1]     2023 中国电子学会科学技术奖(自然科学)三等奖

[2]     2023 江苏省分析测试协会科学技术奖

[3]     2022 江苏青年科技创新“U35攀峰奖”

[4]     2021江苏省高等学校科学技术研究成果奖一等奖

[5]     2020江苏特聘教授      

[6]     2020 江苏省科学技术奖二等奖 

[7]     2019 “六大人才高峰高层次人才       

[8]     2018 教育部高等学校科学研究优秀成果奖(科学技术)一等奖

[9]     2017 江苏省优秀博士毕业论文

[10]  2016 博士后创新人才支持计划

[11]  2015 第十四届挑战杯中航工业全国大学生课外学术科技作品竞赛一等奖

[12]  2015南京市第十一届自然科学优秀学术论文二等奖