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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Electronic and photophysical properties of adducts of [Ru(bpy) _3]~(2+) and Dawson-type sulfite polyoxomolybdates α/β-[Mo_(18)O_(54)(SO_3)_2] ~(4-)
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Electronic and photophysical properties of adducts of [Ru(bpy) _3]~(2+) and Dawson-type sulfite polyoxomolybdates α/β-[Mo_(18)O_(54)(SO_3)_2] ~(4-)

机译:[Ru(bpy)_3]〜(2+)和Dawson型亚硫酸盐多氧钼酸盐α/β-[Mo_(18)O_(54)(SO_3)_2]〜(4-)加合物的电子和光物理性质

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The spectroscopic and photophysical properties of [Ru(bpy) _3]_2[[Mo_(18)O_(54)(SO_3) _2], where bpy is 2,2′-bipyridyl and [Mo_(18)O _(54)(SO_3)_2]~(4-) is either the α or β-sulfite containing polyoxomolybdate isomer, have been measured and compared with those for the well known but structurally distinct sulfate analogue, α-[Mo_(18)O_(54)(SO_4) _2]~(4-). Electronic difference spectroscopy revealed the presence of new spectral features around 480 nm, although they are weak in comparison with the [Ru(bpy)_3]_2[Mo_(18)O _(54)(SO_4)_2] analogue. Surprisingly, Stern-Volmer plots of [Ru(bpy)_3]~(2+) luminescence quenching by the polyoxometallate revealed the presence of both static and dynamic quenching for both α and β-[Mo_(18)O_(54)(SO_3) _2]~(4-). The association constant inferred for the ion cluster [Ru(bpy)_3]_2α-[Mo_(18)O _(54)(SO_4)_2] is K = 5.9 ± 0.56 × 10~6 and that for [Ru(bpy)_3]_2β-[Mo _(18)O_(54)(SO_4)_2] is K = 1.0 ± 0.09 × 10~7. Unlike the sulfate polyoxometalates, both sulfite polyoxometalate-ruthenium adducts are non-luminescent. Despite the strong electrostatic association in the adducts resonance Raman and photoelectrochemical studies suggests that unlike the sulfato polyoxometalate analogue there is no sensitization of the polyoxometalate photochemistry by the ruthenium centre for the sulfite anions. In addition, the adducts exhibit photochemical lability in acetonitrile, attributable to decomposition of the ruthenium complex, which has not been observed for other [Ru(bpy) _3]~(2+) -polyoxometalate adducts. These observations suggest that less electronic communication exists between the [Ru(bpy)_3] ~(2+) and the sulfite polyoxoanions relative to their sulfate polyoxoanion counterparts, despite their structural and electronic analogy. The main distinction between sulfate and sulfite polyoxometalates lies in their reversible reduction potentials, which are more positive by approximately 100 mV for the sulfite anions. This suggests that the capacity for [Ru(bpy) _3]~(2+) or analogues to sensitize photoreduction in the adducts of polyoxometalates requires very sensitive redox tuning.
机译:[Ru(bpy)_3] _2 [[Mo_(18)O_(54)(SO_3)_2]的光谱和光物理性质,其中bpy是2,2'-联吡啶和[Mo_(18)O _(54) (SO_3)_2]〜(4-)是含有α或β-亚硫酸盐的聚氧钼酸盐异构体,已经过测量并与众所周知但结构上不同的硫酸盐类似物α-[Mo_(18)O_(54)比较(SO_4)_2]〜(4-)。电子差异光谱法揭示了在480 nm附近存在新的光谱特征,尽管与[Ru(bpy)_3] _2 [Mo_(18)O _(54)(SO_4)_2]类似物相比,它们较弱。令人惊讶的是,多金属氧酸盐对[Ru(bpy)_3]〜(2+)发光的斯特恩-沃尔默图显示,α和β-[Mo_(18)O_(54)(SO_3)均存在静态和动态猝灭)_2]〜(4-)。离子簇[Ru(bpy)_3]_2α-[Mo_(18)O _(54)(SO_4)_2]的缔合常数为K = 5.9±0.56×10〜6,而[Ru(bpy) _3]_2β-[Mo _(18)O_(54)(SO_4)_2]为K = 1.0±0.09×10〜7。与硫酸盐多金属氧酸盐不同,亚硫酸盐多金属氧酸盐-钌加合物都不发光。尽管加合物共振中存在强的静电缔合作用,拉曼光谱和光电化学研究表明,与硫酸根多金属氧酸盐类似物不同,钌中心对亚硫酸根阴离子没有多金属氧酸盐光化学的敏化作用。另外,该加合物在乙腈中表现出光化学稳定性,这归因于钌络合物的分解,而对于其他[Ru(bpy)_3]〜(2 +)-多金属氧酸盐加合物而言则没有观察到。这些观察结果表明,尽管[Ru(bpy)_3]〜(2+)和亚硫酸盐多氧阴离子与它们的硫酸根多氧阴离子对应物相对应,但它们之间的电子通信较少,尽管它们在结构和电子方面都相似。硫酸盐和亚硫酸盐多金属氧酸盐之间的主要区别在于它们的可逆还原电势,亚硫酸盐阴离子的还原电势高约100 mV。这表明[Ru(bpy)_3]〜(2+)或类似物增强多金属氧酸盐加合物中光还原反应的能力需要非常敏感的氧化还原调节。

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