首页> 外文期刊>ACS applied materials & interfaces >Softoxometalate [{K6.5Cu(OH)(8.5)(H2O)(7.5)}(0.5)@{K3PW12O40}](n) (n=1348-2024) as an Efficient Inorganic Material for CO2 Reduction with Concomitant Water Oxidation
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Softoxometalate [{K6.5Cu(OH)(8.5)(H2O)(7.5)}(0.5)@{K3PW12O40}](n) (n=1348-2024) as an Efficient Inorganic Material for CO2 Reduction with Concomitant Water Oxidation

机译:Softoxoralalate [{K6.5cu(OH)(8.5)(8.5)(H 2 O)(7.5)}(0.5)(n = 1348-2024)(n = 1348-2024),作为CO2的有效无机材料,随着水氧化

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摘要

An immediate challenge for chemists is to devise different methods to trap chemical energy using light by reduction of carbon dioxide to a transportable fuel. To reach this goal the major obstacle lies in finding a suitable material that is abundant and possesses catalytic power to effect such reduction reaction and perform this reduction reaction without using any external photosensitizer. Here we report for the first time a softoxometalate based on a {[K6.5Cu-(OH)(8.5)(H2O)(7.5)](0.5)[K3PW12O40]} metal oxide framework which is stable in reaction conditions that effectively performs photochemical CO, reduction reaction in water with a very high turnover number of 613 and TOF of 47.15 h(-1). We observe that during this reaction water gets oxidized to oxygen, while the electrons released directly go to CO2 reducing it to formic acid. A detailed account of the characterization of the catalyst along with that of products of this reaction is reported.
机译:对化学家的直接挑战是通过将二氧化碳降低到可运输的燃料来设计使用光捕获化学能的不同方法。 为了达到这一目标,主要障碍在于找到一种充分的合适材料,并且具有催化力以实现这种还原反应,并且在不使用任何外部光敏剂的情况下进行这种还原反应。 在这里,我们将第一次报告基于{[k6.5cu-(OH)(8.5)(H 2 O)(7.5)(7.5)](0.5)[K3PW12O40]}金属氧化物框架的第一次硅酸盐在有效执行的反应条件下稳定 光化学有限,水中的还原反应,具有613和TOF的非常高的成交量为47.15 h(-1)。 我们观察到,在该反应过程中,水被氧化成氧气,而电子直接释放到CO 2将其减少到甲酸中。 报道了催化剂表征以及该反应产物的表征的详细描述。

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