Photoionization of aniline in aqueous solution and its photolysis in cyclohexane

被引:27
作者
Saito, F [1 ]
Tobita, S [1 ]
Shizuka, H [1 ]
机构
[1] GUNMA UNIV,DEPT CHEM,KIRYU,GUMMA 376,JAPAN
来源
JOURNAL OF THE CHEMICAL SOCIETY-FARADAY TRANSACTIONS | 1996年 / 92卷 / 21期
关键词
D O I
10.1039/ft9969204177
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Photophysical and photochemical processes of aniline (AN) in aqueous solution together with those in cyclohexane (CH) were investigated by means of laser flash photolysis, time-resolved thermal lensing techniques and fluorimetry. In CB at 298 K, the relaxation processes in the S-1 state of AN consisted of intersystem crossing (Phi(isc) = 0.68), fluorescence (Phi(f) = 0.17), internal conversion (Phi(ic) = 0.08) and anilino radical formation (Phi(AN.) = 0.07) by beta-bond fission. In aqueous solution at 298 K, a significant decrease in the values of Phi(f)(= 0.03), Phi(isc)(= 0.24) and the fluorescence lifetime (tau(f)(o) = 1.0 ns) was observed in contrast to those in CH. The formation of hydrated electron, e(aq)(-) [quantum yield, Phi(eaq-) = 0.18], and internal conversion [Phi(ic) = 0.54 k(ic) = 6.4 x 10(8) s(-1)] became dominant in aqueous solution. The laser power dependence of e(aq)(-) concentration showed that the photoelectron ejection from the S-1 state of AN in aqueous solution resulted from the one-photon absorption process under relatively low laser power (I-L less than or equal to 30 mJ pulse(-1) cm(-2)). The value of Phi(eaq-) was weakly dependent on the excitation laser wavelengths (0.18 and 0.16 at 266 and 308 nm, respectively) within the manifold of the S-1 state of AN and also Little effect of Cs+ on Phi(eaq-) was observed. Furthermore, according to picosecond laser experiments for aqueous AN, e(aq-) was formed within the duration (<20 ps) of the laser pulse. It can be shown from these observations that the photoionization takes place from the non-relaxed S-1 state ((1)AN(*dagger)). The values of Phi(f) and Phi(isc) decreased significantly with increasing temperature. The remarkable temperature effect could be attributed to an increase in Phi(eaq-) and Phi(ic).
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页码:4177 / 4185
页数:9
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