外围赌球软件-足球赌球大球_免费百家乐统计软件_全讯网博彩通777 (中国)·官方网站

Nature Communications published research progress of organic room temperature phosphorescent elastic materials

文章來源:College of Materials Science & Engineering發布時間:2023-08-11瀏覽次數:10

  Recently, a research team from the School of Materials Science and Engineering, Nanjing University of Posts and Telecommunications, and State Key Laboratory of Organic Electronics and Information Displays, made new progress in the field of organic room temperature phosphorescent elastic materials. By incorporating organic room temperature phosphorescent polymers and polyvinyl alcohol into a polydimethylsiloxane matrix, they prepared full-color organic room temperature phosphorescent stretchable elastomers and explored their applications in optical displays and anti-counterfeiting. On August 10th, related results were published in the international academic journal Nature Communications under the title Full-color persistent room temperature phosphorescent elastomers with robust optical properties. Prof. Wei Huang, Prof. Qiang Zhao and Prof. Yun Ma are co-corresponding authors, and Dr. Juan Wei is the first author.

   Organic room temperature phosphorescent materials that can be reversibly stretched under external force and have excellent optical/mechanical properties have huge application potential in the fields of flexible electronics and photonics. At present, doping small molecule phosphorescent crystals into polyvinyl alcohol or polymethyl methacrylate matrices can produce organic room temperature phosphorescent materials with good flexibility and large area. However, the above materials are prone to crystal fracture or rupture under stress, and the phosphorescent intensity and emission lifetime decrease significantly or even quenched, hindering their application in the field of flexible optoelectronics. Therefore, developing organic room temperature phosphorescent elastic materials with excellent mechanical properties and stable optical properties still faces tremendous challenges.

  To address this issue, this research team incorporated organic room temperature phosphorescent polymers with polyvinyl alcohol into a polydimethylsiloxane matrix to prepare a series of full-color organic room temperature phosphorescent elastic materials. The amino and positively charged quaternary phosphonium groups in the organic room temperature phosphorescent polymers, the hydroxyl groups in polyvinyl alcohol, and the ether bonds in polydimethylsiloxane can interact through hydrogen bonding, ionic interactions, dipole-dipole interactions, etc., thus endowing good mechanical properties/room temperature phosphorescence to the prepared elastomers. Even when the elastomers are under mutiple cyclic strain, the strained region still exhibits excellent room temperature phosphorescence. The team explored the application of such elastic materials in optical displays and anti-counterfeiting. This research is of great significance in guiding the development of organic room temperature phosphorescent elastic materials, and will promote breakthrough progress of such materials in fields like wearable optoelectronics, flexible displays, and advanced anti-counterfeiting.

  This work was supported by the National Natural Science Foundation of China and National Key R&D Program of China.



(Written by:  Ma Yun Checked by: Zhao Yunyu, Yi Mingdong Editor: Wang Cunhong  Reviewer: Zhang Feng


百家乐官网平台下载| 红宝石百家乐娱乐城| 百家乐伴侣破解版| 澳门百家乐官网www.bjbj100.com| 木棉百家乐的玩法技巧和规则 | 博彩旅游业| 赌博百家乐官网游戏| 电子百家乐官网打法| 百家乐虚拟视频| 大发888为什么这么卡| 百家乐官网平台哪个有在线支付呢 | 百家乐群sun811| bet365.com| 百家乐官网赌场论坛在线| 网上百家乐骗人| 足球心水| 博彩通百家乐概率| 百家乐官网送彩金平台| 在线百家乐作| 百家乐打法分析| 永利百家乐官网游戏| sz全讯网新2xb112| 真人百家乐ea平台| 历史百家乐官网路单图| 德州扑克与梭哈| 百家乐看澳门| 百家乐官网免费体验金| 伟易博百家乐官网现金网| 百家乐打劫法| 百家乐官网官网网址| 百家乐官网游戏软件出售| 香港六合彩开奖现场直播| 百家乐追号工具| 百家乐群html| 属狗与属猪能做生意吗| 新百家乐官网.百万筹码| 炎陵县| 大发888检测技能| 百家乐筹码桌| 百家乐如何写路| 利高百家乐官网的玩法技巧和规则|