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Photoinduced Room-Temperature Phosphorescence of Triphenylamine-Phenothiazine Derivative-Doped Polymers
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作者 Li Nan Wang Yunsheng Li Zhen 《有机化学》 SCIE CAS CSCD 北大核心 2024年第8期2487-2494,共8页
Photo-responsive room-temperature phosphorescent(RTP)materials have garnered significant interest due to the advantages of rapid response,spatiotemporal control,and contactless precision manipulation.However,the devel... Photo-responsive room-temperature phosphorescent(RTP)materials have garnered significant interest due to the advantages of rapid response,spatiotemporal control,and contactless precision manipulation.However,the development of such materials remains in its infancy,underscoring the importance of exploiting novel and efficient light-responsive RTP molecules.In this work,three phenothiazine derivatives of TPA-PTZ,TPA-2PTZ,and TPA-3PTZ were successfully synthesized via the Buchwald-Hartwig C—N coupling reaction.By embedding these molecules as RTP guests into polymethyl methacrylate(PMMA)matrix,photo-induced RTP properties were realized.Upon sustained UV irradiation,there was an enhancement of 19 times in the quantum yield to reach a value of 5.68%.Remarkably,these materials exhibit superior alongside robust light and thermal stability,maintaining high phosphorescence intensity even after prolonged UV exposure(irradiation for>200 s by a 365 nm UV lamp with the power of 500μW·cm-2)or at higher temperature up to 75℃.The outstanding properties of these photo-induced RTP materials make them promising candidates for applications in information encryption,anti-counterfeiting,and advanced optical materials. 展开更多
关键词 stimuli-responsive luminescent materials photo-induced room-temperature phosphorescence phenothiazine derivatives doped polymer
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单原子催化在海洋能源领域的应用
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作者 唐全骏 刘颖馨 +3 位作者 孟蓉炜 张若天 凌国维 张辰 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2022年第9期29-36,共8页
海洋是未来人类社会重要的能源宝库,其中蕴藏了储量庞大且形式多样的能源,海洋能源与资源的高效转化与获取对实现“双碳目标”具有重要意义.催化技术是提高能源与资源利用效率和转化速率的关键技术,对于海洋巨大的资源储量,其显得更为重... 海洋是未来人类社会重要的能源宝库,其中蕴藏了储量庞大且形式多样的能源,海洋能源与资源的高效转化与获取对实现“双碳目标”具有重要意义.催化技术是提高能源与资源利用效率和转化速率的关键技术,对于海洋巨大的资源储量,其显得更为重要.单原子催化剂具有优异的可调控性、高选择性和高活性位点利用率,与海洋环境相容的单原子催化剂表现出良好的应用潜力.本文对单原子催化在海洋氢能、海洋能源转化和海水提铀等海洋能源领域的研究进行了综合评述,并对单原子催化在海洋能源领域的发展前景进行了展望. 展开更多
关键词 海洋能源 单原子催化 氢能 海水电池 海水提铀
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