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轴向配位的锡(IV)卟啉二噻吩乙烯中的光调节荧光开关

Photoregulated fluorescence switching in axially coordinated tin(IV) porphyrinic dithienylethene.

作者信息

Kim Hee Jung, Jang Joon Hee, Choi Hyunbong, Lee Taegweon, Ko Jaejung, Yoon Minjoong, Kim Hee-Joon

机构信息

Department of Applied Chemistry, Kumoh National Institute of Technology, 1 Yangho-dong, Gumi 730-701, Republic of Korea.

出版信息

Inorg Chem. 2008 Apr 7;47(7):2411-5. doi: 10.1021/ic701390m. Epub 2008 Feb 28.

Abstract

Photochromic fluorophore Sn(TTP)(DTE)2 , in which two phenolic derivatives of 1,2-dithienylethene are axially coordinated to (5,10,15,20-tetratolylporphyrinato)tin(IV) in trans position, has been synthesized and fully characterized by various spectroscopic methods. We have also investigated the photoregulated fluorescence switching behavior of Sn(TTP)(DTE)2 . The fluorescence of the porphyrin macrocycle in Sn(TTP)(DTE) 2 greatly depends on the state of the 1,2-dithienyletene photochromic switch. In the open state (Sn(TTP)(o-DTE)2), the porphyrin exhibits high fluorescence intensity at 609 and 664 nm when excited at 410 nm. When the photocyclization reaction was carried out by irradiating Sn(TTP)(o-DTE)2 with the UV light (approximately 365 nm), the fluorescence intensity of the porphyrin macrocycle decreased. Back irradiation with visible light at wavelengths greater than 500 nm regenerated Sn(TTP)(o-DTE)2 and almost restored the original fluorescence spectrum. The fluorescence intensity of the porphyrin fluorophore is efficiently regulated by photochromic switching between Sn(TTP)(o-DTE)2 and Sn(TTP)(c-DTE)2 in several cycles, clearly demonstrating that the Sn(TTP)(DTE)2 can act as a system for reversible data processing using fluorescence as the detection method.

摘要

光致变色荧光团Sn(TTP)(DTE)2已被合成,并通过各种光谱方法进行了全面表征。在该荧光团中,1,2 - 二噻吩乙烯的两种酚类衍生物以反式轴向配位于(5,10,15,20 - 四甲苯基卟啉)锡(IV)。我们还研究了Sn(TTP)(DTE)2的光调节荧光开关行为。Sn(TTP)(DTE)2中卟啉大环的荧光很大程度上取决于1,2 - 二噻吩乙烯光致变色开关的状态。在开放状态(Sn(TTP)(o - DTE)2)下,当在410 nm激发时,卟啉在609和664 nm处表现出高荧光强度。当用紫外光(约365 nm)照射Sn(TTP)(o - DTE)2进行光环化反应时,卟啉大环的荧光强度降低。用波长大于500 nm的可见光进行反向照射可使Sn(TTP)(o - DTE)2再生,并几乎恢复原始荧光光谱。卟啉荧光团的荧光强度通过Sn(TTP)(o - DTE)2和Sn(TTP)(c - DTE)2之间的光致变色切换在几个循环中得到有效调节,清楚地表明Sn(TTP)(DTE)2可以作为一个使用荧光作为检测方法的可逆数据处理系统。

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