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索雷特带激发后铜(II)四苯基卟啉(CuTPP)的飞秒分辨激发态弛豫动力学

Femtosecond-Resolved Excited State Relaxation Dynamics of Copper (II) Tetraphenylporphyrin (CuTPP) After Soret Band Excitation.

作者信息

Jeong Dahyi, Kang Dong-Gu, Joo Taiha, Kim Sang Kyu

机构信息

Department of Chemistry, KAIST, Daejeon, 34141, Republic of Korea.

Department of Chemistry, POSTECH, Pohang, 37673, Republic of Korea.

出版信息

Sci Rep. 2017 Dec 4;7(1):16865. doi: 10.1038/s41598-017-17296-z.

Abstract

Excited state relaxation dynamics of Copper (II) tetraphenylporphyrin (CuTPP) after Soret band excitation have been investigated in various solvents by femtosecond broadband transient absorption spectroscopy. Significant role of charge transfer state has been confirmed from fast relaxation of triplet CuTPP in pyridine, giving τ ~ 26.5 ps. In piperidine, the transient measured at 480 nm shows biexponential behavior with distinct time constants of 300 fs and 27.4 ps. The fast component with τ ~ 300 fs is attributed to relaxation of the CuTPP-piperidine adduct populated in the ground state, giving the intrinsic relaxation rate of the CuTPP exciplex for the first time. For CuTPP in O-coordinating solvents of 1,4-dioxane and tetrahydrofuran (THF), a completely new relaxation channel via the [d, d] state is opened. As the exciplex formation is diffusion controlled, triplet CuTPP lifetimes in pure solvents employed here are all measured to be more or less same to give ~30 ps, whereas the [d, d] exciplex formed by the ligation with O-coordinating solvents is found to relax much slowly to the ground state, giving lifetimes of ~360 and ~270 ps in 1,4-dioxane and THF, respectively.

摘要

通过飞秒宽带瞬态吸收光谱法,研究了四苯基卟啉铜(II)(CuTPP)在索雷特带激发后的激发态弛豫动力学。电荷转移态的重要作用已通过吡啶中三重态CuTPP的快速弛豫得到证实,其弛豫时间τ约为26.5皮秒。在哌啶中,在480纳米处测得的瞬态显示出双指数行为,时间常数分别为300飞秒和27.4皮秒。τ约为300飞秒的快速成分归因于基态中CuTPP - 哌啶加合物的弛豫,首次给出了CuTPP激基复合物的固有弛豫速率。对于在1,4 - 二氧六环和四氢呋喃(THF)等O配位溶剂中的CuTPP,通过[d, d]态开辟了一个全新的弛豫通道。由于激基复合物的形成受扩散控制,这里使用的纯溶剂中三重态CuTPP的寿命均测得大致相同,约为30皮秒,而与O配位溶剂配位形成的[d, d]激基复合物弛豫到基态的速度要慢得多,在1,4 - 二氧六环和THF中的寿命分别约为360皮秒和270皮秒。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0dc/5715150/bbd54460dfea/41598_2017_17296_Fig1_HTML.jpg

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