磷光
能量转移
分子
纳米技术
费斯特共振能量转移
材料科学
卤素
寄主(生物学)
光化学
化学物理
化学
荧光
物理
有机化学
光学
烷基
生物
生态学
作者
Yeling Ning,Junfang 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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