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通过时间分辨荧光和瞬态吸收研究 4-(二甲氨基)苯甲腈的分子内电荷转移:没有证据表明存在两种 ICT 态和一个 pisigma( *)反应中间体。

Intramolecular charge transfer of 4-(dimethylamino)benzonitrile probed by time-resolved fluorescence and transient absorption: No evidence for two ICT states and a pisigma( *) reaction intermediate.

机构信息

Max-Planck-Institut für biophysikalische Chemie, Spektroskopie und Photochemische Kinetik, 37070 Göttingen, Germany.

出版信息

J Chem Phys. 2009 Dec 14;131(22):224313. doi: 10.1063/1.3270165.

Abstract

For the double exponential fluorescence decays of the locally excited (LE) and intramolecular charge transfer (ICT) states of 4-(dimethylamino)benzonitrile (DMABN) in acetonitrile (MeCN) the same times tau(1) and tau(2) are observed. This means that the reversible LE<==>ICT reaction, starting from the initially excited LE state, can be adequately described by a two state mechanism. The most important factor responsible for the sometimes experimentally observed differences in the nanosecond decay time, with tau(1)(LE)<tau(1)(ICT), is photoproduct formation. By employing a global analysis of the LE and ICT fluorescence response functions with a time resolution of 0.5 ps/channel in 1200 channels reliable kinetic and thermodynamic data can be obtained. The arguments presented in the literature in favor of a pisigma( *) state with a bent CN group as an intermediate in the ICT reaction of DMABN are discussed. From the appearance of an excited state absorption (ESA) band in the spectral region between 700 and 800 nm in MeCN for N,N-dimethylanilines with CN, Br, F, CF(3), and C(=O)OC(2)H(2) p-substituents, it is concluded that this ESA band cannot be attributed to a pisigma( *) state, as only the C-C[Triple Bond]N group can undergo the required 120 degrees bending.

摘要

对于 4-(二甲氨基)苯甲腈(DMABN)在乙腈(MeCN)中的局域激发(LE)和分子内电荷转移(ICT)态的双指数荧光衰减,观察到相同的时间 tau(1)和 tau(2)。这意味着,从最初激发的 LE 态开始的可逆 LE<==>ICT 反应,可以通过双态机制进行充分描述。负责有时在纳秒衰减时间实验观察到的差异的最重要因素是光产物形成。通过采用 LE 和 ICT 荧光响应函数的全局分析,时间分辨率为 0.5 ps/通道,在 1200 个通道中可以获得可靠的动力学和热力学数据。本文讨论了文献中提出的有利于作为 DMABN ICT 反应中间体的具有弯曲 CN 基团的 pisigma( *) 态的论点。从 MeCN 中具有 CN、Br、F、CF(3)和 C(=O)OC(2)H(2) p-取代基的 N,N-二甲基苯胺在 700 至 800nm 光谱区域中出现的激发态吸收(ESA)带,可以得出结论,该 ESA 带不能归因于 pisigma( *) 态,因为只有 C-C[三重键]N 基团才能经历所需的 120 度弯曲。

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