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首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Photoinduced energy-transfer and electron-transfer processes in molecules of tetrakis((E)-2-(50-hexyl-2,20-bithiophen-5-yl)vinyl)benzene and perylenediimide
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Photoinduced energy-transfer and electron-transfer processes in molecules of tetrakis((E)-2-(50-hexyl-2,20-bithiophen-5-yl)vinyl)benzene and perylenediimide

机译:四((E)-2-(50-己基-2,20-联噻吩-5-基)乙烯基)苯和per二酰亚胺分子的光诱导能量转移和电子转移过程

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Photoinduced energy- and electron-transfer processes of donor-σ-acceptor molecules composed of [1,2,4,5-tetrakis((E)-2-(50-hexyl-2,20-bithiophen-5-yl)vinyl)benzene] (HPBT) with one, two and four entities of perylenediimide (PDI) forming HPBT-PDI_n (n = 1, 2 and 4) have been examined in this article by utilizing steady-state absorption and emission, computational, electrochemical and time-resolved transient absorption studies. The HPBT-PDI_n molecules are connected through long non-conjugated σ-bonds that may prevent the direct overlap of HPBT and PDI energy levels. Electrochemical studies suggest the exothermic photoinduced electron transfer processes when HPBT and PDI are selectively excited. Upon excitation the HPBT entity, the steady-state emission and femtosecond transient absorption measurements of HPBT-PDI_n revealed an efficient energy transfer from the singlet excited HPBT to PDI with time constants on the order of ~10~(10) s~(-1). The energy donor-acceptor distance, r = ~22 A, is calculated from the experimental energy transfer rates using Forster theory and from the MO calculations using ab initio B3LYP/6-311G method. By selective excitation the PDI entity, the electron-transfer processes take place from HPBT to the singlet excited PDI with time constants on the order of ~10~8 s~(-1). The slow rates of electron transfer and energy transfer processes indicated that these molecules tend to take conformations with relatively long distance between HPBT and PDI entities.
机译:由[1,2,4,5-四((E)-2-(50-己基-2,20-联噻吩-5-基)乙烯基]组成的供体σ受体分子的光诱导能量和电子转移过程本文利用稳态吸收和发射,计算,电化学和化学方法研究了具有一,二和四个实体的二forming二酰亚胺(PDI)形成HPBT-PDI_n(n = 1、2和4)的[]苯](HPBT)。时间分辨的瞬态吸收研究。 HPBT-PDI_n分子通过长的非共轭σ键连接,这可以防止HPBT和PDI能级直接重叠。电化学研究表明,当HPBT和PDI被选择性激发时,放热光诱导的电子转移过程。激发HPBT实体后,HPBT-PDI_n的稳态发射和飞秒瞬态吸收测量表明,单线激发HPBT到PDI的能量转移效率很高,时间常数约为〜10〜(10)s〜(-1) )。能量供体-受体之间的距离r =〜22 A,是使用Forster理论从实验的能量传递速率计算出来的,并且是使用从头算B3LYP / 6-311G方法进行的MO计算得出的。通过选择性激发PDI实体,电子转移过程从HPBT发生到单重激发PDI,时间常数约为10〜8 s〜(-1)。电子转移和能量转移过程的缓慢速度表明,这些分子倾向于在HPBT和PDI实体之间以相对较长的距离构象。

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