磷光
能量转移
分子
费斯特共振能量转移
材料科学
共振(粒子物理)
寄主(生物学)
电子
光化学
化学物理
光电子学
原子物理学
化学
荧光
物理
有机化学
光学
核物理学
生物
生态学
作者
Yeling Ning,Jiaxin Yang,Han Si,Haozhong Wu,Xiaoyan Zheng,Anjun Qin,Ben Zhong Tang
标识
DOI:10.1007/s11426-020-9980-4
摘要
Ultralong organic room-temperature phosphorescence (RTP) materials have attracted tremendous attention recently due to their diverse applications. Several ultralong organic RTP materials mimicking the host-guest architecture of inorganic systems have been exploited successfully. However, complicated synthesis and high expenditure are still inevitable in these studies. Herein, we develop a series of novel host-guest organic phosphorescence systems, in which all luminophores are electron-rich, commercially available and halogen-atom-free. The maximum phosphorescence efficiency and the longest lifetime could reach 23.6% and 362 ms, respectively. Experimental results and theoretical calculation indicate that the host molecules not only play a vital role in providing a rigid environment to suppress non-radiative decay of the guest, but also show a synergistic effect to the guest through Forster resonance energy transfer (FRET). The commercial availability, facile preparation and unique properties also make these new host-guest materials an excellent candidate for the anti-counterfeiting application. This work will inspire researchers to develop new RTP systems with different wavelengths from commercially available luminophores.
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