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Charge-localized naphthalene-bridged bis-hydrazine radical cations

机译:电荷局部化的萘桥联双肼自由基阳离子

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摘要

Electron transfer (ET) in four symmetrically substituted naphthalene-bridged bis-hydrazine radical cations (1,4; 1,5; 2,6; and 2,7) is compared within the Marcus-Hush framework. The ET rate constants (kET) for three of the compounds were measured by ESR; the 2,7-substituted compound has an intramolecular ET that is too slow to measure by this method. The kET values are significantly dependent upon the substitution pattern of the hydrazine units on the naphthalene bridge but do not correlate with the distance between them. This is contrary to an assumption that is frequently made about intervalence compounds that the bridge serves only as a spacer that fixes the distance between the charge-bearing units. The internal vibrational and solvent portions (lambda(v) and lambda(s)) of the total reorganization energy (lambda) have been separated using solvent effects on the intervalence band maximum, resulting in a lambda(v) that is the same, 9900 cm(-1), for the differently substituted naphthalenes. This is in accord with the general assumption that lambda(v) is primarily dependent upon the charge bearing unit and not the bridge. However, the trends in lambda(s) cannot be explained by dielectric continuum theory.
机译:在Marcus-Hush框架内比较了四个对称取代的萘桥联双肼自由基阳离子(1,4; 1,5; 2,6;和2,7)中的电子转移(ET)。通过ESR测量三种化合物的ET速率常数(kET); 2,7-取代的化合物的分子内ET太慢,无法通过此方法进行测量。 kET值显着取决于萘桥上肼单元的取代方式,但与它们之间的距离无关。这与通常关于间隔化合物的假设相反,该假设是桥仅用作固定电荷携带单元之间距离的间隔基。总重组能量(lambda)的内部振动和溶剂部分(lambda(v)和lambda(s))已使用对间隔带最大值的溶剂效应进行了分离,从而得到的lambda(v)相同,为9900 cm(-1),用于不同取代的萘。这符合以下一般假设:lambda(v)主要取决于电荷承载单元,而不取决于电桥。但是,λ的趋势不能用介电连续体理论来解释。

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