首页> 外文期刊>Inorganica Chimica Acta >Specific cation effect on quenching reactions of excited tris(alpha,alpha '-diimine)ruthenium(II) and tris(2,2 '-bipyridine)chromium(III) by tris(oxalato)- and tris(malnato)chromates(III) in aqueous solutions
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Specific cation effect on quenching reactions of excited tris(alpha,alpha '-diimine)ruthenium(II) and tris(2,2 '-bipyridine)chromium(III) by tris(oxalato)- and tris(malnato)chromates(III) in aqueous solutions

机译:特定阳离子对三(草酸酯)-和三(麦芽)铬酸酯(III)激发的三(α,α'-二亚胺)钌(II)和三(2,2'-联吡啶)铬(III)猝灭反应的影响在水溶液中

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Specific salt effects were studied on the quenching reaction of excited [Ru(N-N)(3)](2+) (N-N-2,2'-bipyridine (bpy), 1,10-phenanthrorine (phen)) and [Cr(bpy)(3-) by [Cr(ox)(3)](3-) (ox = oxalate ion) and [Cr(mal)(3)](3-) (mal = malonate ion) in aqueous solutions as a function of alkali metal ions which were added for adjustment of ionic strength. The value of k(q), quenching rate constants. and k(1), energy transfer rate constant in encounter complex, is changed by the cations as the order of Li+ > Na- > K+ approximate to Rb- less than or equal to Cs-, although diffusion rate constants are not changed by the co-existing cations. Among the quenching reactions investigated in this work, a ratio of k(1) values in the aqueous Solutions whose ionic strength was adjusted with LiCl and KCl, k(1)(LiCl)/k(1)(KCl), is larger for quenching systems of closely approached donor-acceptor pair than loosely bounded pair. These results indicate that co-existing alkali cation tunes the distance between donor and acceptor in encounter complex where energy transfer occurs. (C) 2003 Elsevier B.V. All rights reserved. [References: 30]
机译:研究了特定盐效应对激发的[Ru(NN)(3)](2+)(NN-2,2'-联吡啶(bpy),1,10-菲咯啉(phen))和[Cr( bpy)(3-)由[Cr(ox)(3)](3-)(ox =草酸根离子)和[Cr(mal)(3)](3-)(mal =丙二酸根离子)作为水溶液为调节离子强度而添加的碱金属离子的功能。 k(q)的值,淬灭速率常数。和k(1)是遇到的络合物中的能量传递速率常数,随着Li +> Na-> K +的顺序近似于Rb-小于或等于Cs-,阳离子会改变阳离子,尽管扩散速率常数不会因共存阳离子。在这项工作中研究的淬灭反应中,离子强度用LiCl和KCl调节的水溶液中的k(1)值之比,k(1)(LiCl)/ k(1)(KCl)较大。紧密接近供体-受体对的淬灭系统,而不是松散结合的对。这些结果表明,共存的碱金属阳离子会调节发生能量转移的复合体中供体与受体之间的距离。 (C)2003 Elsevier B.V.保留所有权利。 [参考:30]

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