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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Bonding interactions between sulfur dioxide (SO2) and mono-ruthenium(II)-substituted Keggin-type polyoxometalates: electronic structures of ruthenium-SO2 adducts
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Bonding interactions between sulfur dioxide (SO2) and mono-ruthenium(II)-substituted Keggin-type polyoxometalates: electronic structures of ruthenium-SO2 adducts

机译:二氧化硫(SO2)与单钌(II)取代的Keggin型多金属氧酸盐之间的键相互作用:钌-SO2加合物的电子结构

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Density functional theory (DFT) calculations and natural bond orbital (NBO) analysis were carried out to investigate the electronic structures and bonding features between the rutheniumOi) atom and the SO2 molecule in two ruthenium-sulfur dioxide (SO2) adducts, trans-Ru(NH3)4{SO2)Cl~+ and [{SiW_(11)O_(39)}Ru~(II)(SO2)]~(6-). In addition, the bonding interactions between SO2 and the metal-ruthenium fragment were determined by binding energy (ΔE_(ads)) calculation and electronic structures. The results indicate that the η~1-S-planar model in both trans-Ru(NH3)4(SO2)Cl~+ and [{SiW_(11)O_(39)}Ru~(II)(SO2)]~(6-) are more favorable. NBO analysis of the bonding interaction between ruthenium and sulfur centers in the [{SiW_(11)O_(39)}Ru~(II)(SO2)]~(6-) complex shows that it possesses a a and a n bond. It predicts that the polyoxometalate [SiW_(11)O_(39)Ru]~(6-) can serve as a potential adsorbent for the SO2 molecule because of the strong Ru-S bond relative to Ru(NH3)4Cl`=.
机译:进行了密度泛函理论(DFT)计算和自然键轨道(NBO)分析,以研究两种钌-二氧化硫(SO2)加合物反-Ru()中钌(Oi)原子与SO2分子之间的电子结构和键合特征。 NH3)4 {SO2)Cl〜+和[{SiW_(11)O_(39)} Ru〜(II)(SO2)]〜(6-)。此外,通过结合能(ΔE_(ads))计算和电子结构确定了SO2与金属钌片段之间的键合相互作用。结果表明,反式Ru(NH3)4(SO2)Cl〜+和[{SiW_(11)O_(39)} Ru〜(II)(SO2)]〜中的η〜1-S平面模型(6-)更有利。 NBO分析[{SiW_(11)O_(39)} Ru〜(II)(SO2)]〜(6-)配合物中钌与硫中心之间的键相互作用,结果表明它具有a和n键。可以预测,由于相对于Ru(NH3)4Cl` =,Ru-S键很强,多金属氧酸盐[SiW_(11)O_(39)Ru]〜(6-)可以作为SO2分子的潜在吸附剂。

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