某些双环分子与四氰喹诺二甲烷激发态电子转移反应的实验研究

R. De, S. Bhattacharyya , T. Ganguly
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引用次数: 4

摘要

采用纳秒级时域电子吸收、稳态荧光和时间分辨光谱等方法,研究了在室温(300 K)下不同极性流体溶液中,激发(地)双环电子供体5,6,7,8-四氢萘(TH2N)、2-甲氧基-5,6,7,8-四氢萘(2MTHN)与基态(激发)受体四氰喹啉二甲烷(TCNQ)之间的光诱导电子转移(ET)反应。本文认为,在高极性溶剂乙腈(ACN)中,由于供体TH2N或2MTHN与TCNQ发生ET相遇,在激发单重态(S1)形成结构松散的瞬态双离子对配合物(GIP),该GIP配合物迅速解离成稳定的激发自由基离子。在极性DMF溶剂中,TCNQ在没有供体分子存在的情况下表现出阴离子的电子吸收带。稳态和时间分辨数据表明,在极性较低的溶剂四氢呋喃(THF)中,供体和受体TCNQ之间的ET反应在很大程度上受到阻碍。在高极性溶剂ACN中,从电子激发态中自由基种类的观察表明,给体和受体TCNQ之间的ET反应为绝热反应或介于绝热和非绝热之间的反应。对于一些双环供体和TCNQ受体系统,较大的负ΔG,这是局部激发态和自由基离子对状态之间的差距的度量,表明反应发生在高度放热的区域。进一步观察- ΔG>λ、核重建能参数和ET率(kET)随放热强度的增加而递减(更多的负ΔG值)表明,本研究中研究的双环给体- tcnq受体体系的ET反应可能发生在Marcus倒转区。提出了利用现有的供体-受体体系构建高效光导电材料的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental investigation of excited state electron transfer reactions between some bicyclic molecules and tetracyanoquinodimethane (TCNQ)

Investigations on photoinduced electron transfer (ET) reactions between excited (ground) bicyclic electron donors 5,6,7,8-tetrahydro-2-naphthol (TH2N), 2-methoxy-5,6,7,8-tetrahydro naphthalene (2MTHN) and ground state (excited) acceptor tetracyanoquinodimethane (TCNQ) in fluid solutions of different polarity at the ambient temperature (300 K) by electronic absorption, steady state fluorescence and time-resolved spectroscopic methods in the time domain of nanosecond order have been carried out. It is suggested that in highly polar solvent acetonitrile (ACN), a loosely-structured transient geminate ion-pair complex (GIP) in the excited singlet state (S1) is formed due to the ET encounter between the present donor TH2N or 2MTHN and TCNQ and this GIP complex rapidly dissociates into stable excited radical ions, as evidenced from steady state spectra. In polar DMF solvents, TCNQ exhibits an electronic absorption band of its anion without the presence of donor molecules. Both steady state and time-resolved data indicate that ET reactions between the present donors and acceptor TCNQ are largely impeded in the less polar solvent tetrahydrofuran (THF). In the highly polar solvent ACN, ET reactions between the donors and acceptor TCNQ have been suggested to be of adiabatic or intermediate between adiabatic and non-adiabatic types, from the observation of radical ion species in the electronic excited state. For some bicyclic donors and TCNQ acceptor systems, large negative ΔG, which is a measure of the gap between locally excited and radical ion-pair states, shows reaction occurs in highly exothermic regions. Further observations of −ΔG>λ, nuclear reorganization energy parameters and the decrement of ET rate (kET) with increasing exothermicity (more negative ΔG values) suggest the ET reaction for the bicyclic donor—TCNQ acceptor systems studied in the present investigation might occur in the Marcus inverted region. The possibility of building up efficient photoconducting materials with the present donor acceptor systems is suggested.

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