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首页> 外文期刊>ChemSusChem >A Visible-Light Harvesting System for CO2 Reduction Using a Ru-II-Re-I Photocatalyst Adsorbed in Mesoporous Organosilica
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A Visible-Light Harvesting System for CO2 Reduction Using a Ru-II-Re-I Photocatalyst Adsorbed in Mesoporous Organosilica

机译:使用Ru-II-Re-re-I光催化剂吸附在中孔有机溶胶中的CO2减少的可见光收集系统

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摘要

A photocatalytic system for CO2 reduction exhibiting visible-light harvesting was developed by preparing a hybrid consisting of a supramolecular metal complex as photocatalyst and periodic mesoporous organosilica (PMO) as light harvester. A (RuReI)-Re-II binuclear complex (RuRe) with methylphosphonic acid anchor groups was adsorbed on acridone or methylacridone embedded in the walls of PMO mesochannels to yield the hybrid structure. The embedded organic groups absorbed visible light, and the excitation energy was funneled to the Ru units. The energy accumulation was followed by electron transfer and catalytic reduction of CO2 to CO on the Re unit. The light harvesting of these hybrids enhanced the photocatalytic CO evolution rate by a factor of up to ten compared with that of RuRe adsorbed on mesoporous silica without a light harvester.
机译:通过制备由超分子金属络合物作为光催化剂和周期性介孔有机硅(PMO)组成的杂交,开发了可见光收获的CO 2减少的光催化系统作为光催化剂。 将甲基膦酸锚基团的(Rurei)-Re-II双核络合物(Rured)吸附在嵌入在PMO Mesochannels的壁中的吖啶酮或甲基吖啶酮上,得到杂化结构。 嵌入的有机基团吸收了可见光,并且激发能量汇集到Ru单元上。 在RE单位上,通过电子传递和CO 2催化还原CO 2的催化还原。 这些杂种的光收割量增强了光催化CO进化率,而在没有明亮的硅胶上吸附在没有明亮的Harvester上的源二氧化硅的尺寸相比增强了倍数。

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