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氧气对共振双光子电离过程中二苯乙烯自由基阳离子形成与衰变的影响。

Effect of oxygen on the formation and decay of stilbene radical cation during the resonant two-photon ionization.

作者信息

Hara Michihiro, Samori Shingo, Xichen Cai, Fujitsuka Mamoru, Majima Tetsuro

机构信息

The Institute of Scientific and Industrial Research (SANKEN), Osaka University, Mihogaoka 8-1, Ibaraki, Osaka 567-0047, Japan.

出版信息

J Org Chem. 2005 May 27;70(11):4370-4. doi: 10.1021/jo050317n.

Abstract

Formation and decay of radical cations of trans-stilbene and p-substituted trans-stilbenes (S.+) during the resonant two-photon ionization (TPI) of S in acetonitrile in the presence and absence of O(2) have been studied with laser flash photolysis using a XeCl excimer laser (308 nm, fwhm 25 ns). The transient absorption spectra of S.+ were observed with a peak around 470-490 nm. The formation quantum yield of S.+ (0.06-0.29) increased with decreasing oxidation potential (E(ox)) and increasing fluorescence lifetime (tau(f)) of S, except for trans-4-methoxystilbene which has the lowest E(ox) and longer tau(f) among S. The considerable low yield and fast decay in a few tens of nanoseconds time scale were observed for trans-4-methoxystilbene.+ in the presence of O(2), but not for other S.+ . It is suggested that formation of the ground-state complex between trans-4-methoxystilbene and O(2) and the distonic character of trans-4-methoxystilbene.+ with separation and localization of the positive charge on the oxygen of the p-methoxyl group and an unpaired electron on the beta-olefinic carbon are responsible for the fast reaction of trans-4-methoxystilbene.+ with O(2) or superoxide anion, leading to the considerable low yield and fast decay of trans-4-methoxystilbene.+ . The mechanism based on the transient absorption measurement of S.+ during the TPI is consistent with the relatively high oxidation efficiency of trans-4-methoxystilbene among S based on the product analysis during the photoinduced electron transfer in the presence of a photosensitizer such as 9,10-dicyanoanthracene and O(2) in acetonitrile.

摘要

在有氧气和无氧气存在的情况下,使用XeCl准分子激光(308 nm,半高宽25 ns)通过激光闪光光解研究了反式二苯乙烯和对取代反式二苯乙烯(S. +)在乙腈中的共振双光子电离(TPI)过程中自由基阳离子的形成和衰变。观察到S. +的瞬态吸收光谱,其峰值在470 - 490 nm左右。除了反式4 - 甲氧基二苯乙烯,S. +的形成量子产率(0.06 - 0.29)随着S的氧化电位(E(ox))降低和荧光寿命(tau(f))增加而增加,反式4 - 甲氧基二苯乙烯在S中具有最低的E(ox)和较长的tau(f)。在有氧气存在的情况下,观察到反式4 - 甲氧基二苯乙烯阳离子在几十纳秒的时间尺度内产率相当低且衰变很快,但其他S. +没有这种情况。有人认为,反式4 - 甲氧基二苯乙烯与氧气之间形成基态复合物以及反式4 - 甲氧基二苯乙烯阳离子的离域特性,即正电荷在对甲氧基的氧上分离和定位,未成对电子在β - 烯烃碳上,是反式4 - 甲氧基二苯乙烯阳离子与氧气或超氧阴离子快速反应的原因,导致反式4 - 甲氧基二苯乙烯阳离子产率相当低且衰变很快。基于TPI过程中S. +的瞬态吸收测量的机制与基于在乙腈中存在诸如9,10 - 二氰基蒽等光敏剂和氧气的光诱导电子转移过程中的产物分析得出的反式4 - 甲氧基二苯乙烯在S中相对较高的氧化效率是一致的。

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