赌球术语-赌球加时_免费百家乐计划_全讯网14234(中国)·官方网站

NJUPT Publishes in Nature Communications --Publication of Nature Communications Research Progress of the Team of the State Key Laboratory of Organic Electronics and Information Display in the Field of Organic Intelligent Photoelectric Materials

文章來源:材料科學與工程學院發布時間:2023-02-07瀏覽次數:11

  Recently, the team of Academician Huang Wei, Professor Zhao Qiang and Professor Ma Yun from the School of Materials Science and Engineering of Nanjing University of Posts and Telecommunications, the State Key Laboratory of Organic Electronics and Information Display made new progress in the field of organic intelligent photoelectric materials, and realized the dynamic regulation of the response behavior of organic intelligent photoelectric materials through the orthogonal stimulation of the external field, and explored its application in the field of optical information anti-counterfeiting. On February 6th, the related achievements were published in the international academic journal Nature Communications with the title of “Conformation-dependent Dynamic Organic Phosphorescence Through Thermal Energy Driven Molecular Rotations”. After the publication of this research, it aroused widespread concern. At the invitation of Nature Portfolio Communities of Nature Group, the research team wrote in the column “Behind the Paper” to share the research experience. Academician Huang Wei, Professor Zhao Qiang and Professor Ma Yun of the Key Laboratory are co-authors, and Dr. Wei Juan is the first author of the paper.

  In recent years, scholars at home and abroad have made remarkable progress in developing organic intelligent photoelectric materials that are responsive to external stimuli such as light, heat, force and electricity, and have realized their applications in optical and optoelectronic fields such as information display, security anti-counterfeiting, and biological imaging. It is of great significance to realize the dynamic regulation of the response behavior of this kind of organic intelligent photoelectric materials to improve their photoelectric properties, which is one of the main research directions in this field. However, the current strategies for regulating the response behavior of organic intelligent photoelectric materials are mainly based on chemical structure modification, which makes it difficult to switch dynamically and quickly in the application process. It is a major challenge to realize the dynamic regulation of the response behavior of organic intelligent photoelectric materials.

  Aiming at this key scientific problem, the team led by Academician Huang Wei, Professor Zhao Qiang and Professor Ma Yun copolymerized the phosphorescent molecular rotor with acrylamide as monomer and developed a series of organic room temperature phosphorescent polymers. Because the aromatic groups on the phosphorescent molecular rotor can rotate freely, they will present different molecular structures in the polymer, which directly affects the triplet excited state properties of each phosphorescent monomer. Therefore, the prepared organic room temperature phosphorescent polymers show different phosphorescent colors under different wavelength excitation. Furthermore, the molecular structure of phosphorescent monomer can be changed by driving the molecular rotor to rotate through external thermal stimulation, and the response behavior of excitation wavelength-dependent luminescence can be changed, thus realizing dynamic regulation of response behavior. Finally, the team members explored the application of this kind of organic intelligent photoelectric materials in the field of optical information anti-counterfeiting. The research results have important guiding significance for the development of organic intelligent photoelectric materials whose response behavior can be dynamically regulated, and will also promote this kind of materials to make breakthrough progress in the photoelectric fields such as information display, information security and information sensing.

  This work is supported by the National Science Foundation for Outstanding Young Scholars, the National Basic Science Center Project, the General Project of the National Natural Science Foundation, the Key Support Project of distinguished professor, Jiangsu Province and the Outstanding Youth Fund Project of Jiangsu Province.

Organic intelligent photoelectric material with dynamically regulable response behavior and its optical anti-counterfeiting application


(Writer: Ma Yun Preliminary Reviewer: Zhao Yunyu  Editor: Wang Cunhong  Final Reviewer: Zhang Feng)



鄂托克前旗| 百家乐官网好多假网站| 大发888娱乐城官方lm0| 玩百家乐官网新澳门娱乐城| 一直对百家乐很感兴趣.zibo太阳城娱乐城| 大发888赌博网站大全| 百家乐官网庄闲和收益| 大发888娱乐场手机| 百家乐官网赌场技巧论坛| 百家乐赌场规则| 澳门百家乐官网玩大小| 百家乐赌博大揭密| 百家乐官网博彩安全吗| 太阳城 娱乐城| 富易堂百家乐官网娱乐城| 百家乐网上赌场| 百家乐官网路子技巧| 大西洋城| 百家乐赌场破解方法| 真人百家乐官网赌城| 赌场大亨| 大发888娱乐官方下载| 新时代百家乐官网娱乐城| 新濠娱乐城| 大发888 真钱娱乐场| 百家乐免费破解外挂| 百家乐官网怎么押钱| 丰合网上娱乐| 全讯网433234| 游戏房百家乐赌博图片| 真人百家乐官网代理分成| 资阳市| 大发888微信公众号2| 做生意用的 风水上最好的尺寸有| 真人百家乐官网什么平台| 赌场游戏| 大发888博必发| 百家乐赌大小| 百家乐真人荷官| 新锦江百家乐官网的玩法技巧和规则 | 林口县|