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Purely organic optoelectronic materials with ultralong-lived excited states under ambient conditions 被引量:4
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作者 Jie Yuan Yuting Tang +2 位作者 Shen Xu Runfeng Chen Wei Huang 《Science Bulletin》 SCIE EI CAS CSCD 2015年第19期1631-1637,共7页
The exponential growth of utilizing synthetic organic molecules in optoelectronic applications poses strong demands for rational control over the excited states of the materials. The manipulation of excited states thr... The exponential growth of utilizing synthetic organic molecules in optoelectronic applications poses strong demands for rational control over the excited states of the materials. The manipulation of excited states through molecular design has led to the development of high-performance optoelectronic devices with tunable emission colors, high quantum efficiencies and efficient energy/charge transfer processes. Recently, a significant breakthrough in lifetime tuning of excited states has been made;the purely organic molecules were found to have ultralonglived excited state under ambient conditions with luminescence lifetimes up to 1.35 s, which are several orders of magnitude longer than those of conventional organic fluorophores. Given the conceptual advance in understanding the fundamental behavior of excited state tuning in organic luminescent materials, the investigations of organic ultralong room-temperature phosphorescence(OURTP) should provide new directions for researches and have profound impacts on many different disciplines. Here, we summarized the recent understandings on the excited state tuning, the reported OURTP molecules and their design considerations,the spectacular photophysical performance, and the amazing optoelectronic applications of the newly emerged organic optoelectronic materials that free of heavy metals. 展开更多
关键词 Excited state tuning Lifetime manipulation ourtp Organic electronics Optoelectronic applications
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纯有机长余辉:现象、机理及应用
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作者 亓媛媛 安众福 +1 位作者 陈润锋 黄维 《中国科学基金》 CSSCI CSCD 北大核心 2016年第4期325-327,共3页
长余辉发光材料在激发源停止激发后,仍然能够持续发光,在弱光照明、应急指示、建筑节能、智能交通、信息存储和显示等领域,特别是能在“免激发”条件下实现生物传感和成像以及多重数据加密和防伪方面,具有广泛的应用前景。与无机长... 长余辉发光材料在激发源停止激发后,仍然能够持续发光,在弱光照明、应急指示、建筑节能、智能交通、信息存储和显示等领域,特别是能在“免激发”条件下实现生物传感和成像以及多重数据加密和防伪方面,具有广泛的应用前景。与无机长余辉材料的悠久历史和如火如荼的研究现状相比,有机长余辉材料的发展甚晚,这是因为有机分子的激发态高度活泼, 展开更多
关键词 纯有机长余辉 长寿命发光 激发态调控 光电应用
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