极性介质中由二烷基胺和三烷基胺到硝基萘三重态的电子转移引起的光还原

H. Görner, D. Döpp
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引用次数: 5

摘要

在354nm激光脉冲激发下,采用紫外-可见光谱和电导法研究了1-和2-硝基萘(1-和2-NN)和1-甲氧基-4-硝基萘(MNN)在DABCO、三乙胺(TEA)和二乙胺(DEA)存在下在纯乙腈和乙腈-水中的光诱导反应。胺对硝基萘三重态的猝灭速率常数在脱氧乙腈中接近扩散控制极限,在有水(5 M)存在时更小(kq 2 × 109 M−1 s−1)。电子转移产生硝基萘自由基阴离子,在390 nm处达到最大值,为次级瞬态。在较高的TEA或DEA浓度(bbb1mm)下,硝基萘自由基通过涉及α-氨基烷基自由基的硝基萘基态还原,在第二次延迟事件中形成。硝基萘通过二级终止反应生成亚硝基萘和其他产物。光诱导的电子转移和随后的自由基歧化反应得到了时间分辨电导测量的支持。讨论了在TEA或DEA存在下两步还原反应的机理以及胺浓度、氧和水的影响。
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Photoreduction induced by electron transfer from di- and trialkylamines to the triplet state of nitronaphthalenes in polar media
The photoinduced reactions of 1- and 2-nitronaphthalene (1- and 2-NN) and 1-methoxy-4-nitronaphthalene (MNN) in the presence of DABCO, triethylamine (TEA) and diethylamine (DEA) in neat acetonitrile and acetonitrile–water were studied by UV–vis spectroscopy and conductometry upon excitation by ns laser pulses at 354 nm. The rate constant of quenching of the nitronaphthalene triplet state by the amines is close to the diffusion-controlled limit in deoxygenated acetonitrile and smaller (kq ≊ 2 × 109 M−1 s−1) in the presence of water (5 M). Electron transfer yields the nitronaphthalene radical anions which were observed as secondary transients with maxima at 390 nm. At higher TEA or DEA concentrations (>1 mM) nitronaphthalene radicals are formed in a second, delayed event by reduction of the nitronaphthalene ground state involving the α-aminoalkyl radicals. The nitronaphthalene radicals react via second-order termination yielding nitrosonaphthalenes and further products. The photoinduced electron transfer and subsequent radical disproportionation reactions are supported by time-resolved conductometric measurements. The mechanism of the two-step reduction reactions in the presence of TEA or DEA and the effects of amine concentration, oxygen and water are discussed.
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