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Judging the feasibility of TiO2 as photocatalyst for chemical energy conversion by quantitative reactivity determinants

机译:通过定量反应性决定蛋白判断TiO2作为光催化剂的光催化剂的可行性

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In this study we assess the general applicability of the widely used P25-TiO2 in gas-phase photocatalytic CO2 reduction based on experimentally determined reactivity descriptors from classical heterogeneous catalysis (productivity) and photochemistry (apparent quantum yield/AQY). A comparison of the results with reports on the use of P25 for thermodynamically more feasible reactions and our own previous studies on P25-TiO2 as photocatalyst imply that the catalytic functionality of this material, rather than its properties as photoabsorber, limits its applicability in the heterogeneous photocatalytic CO2 reduction in the gas phase. The AQY of IrOx/TiO2 in overall water splitting in a similar high-purity gas-solid process was four times as high, but still far from commercial viability.
机译:在这项研究中,我们评估广泛使用的P25-TiO2在基于经典异质催化(生产率)和光化学(表观量子产量/ AQY)的实验确定的反应性描述符的气相光催化CO2降低的一般适用性。 对结果的结果进行比较,用于使用P25进行热力学上更可行的反应和我们对P25-TiO2的先前研究,作为光催化剂意味着这种材料的催化功能,而不是其作为光吸收的性质,限制了其在异构中的适用性 光催化二氧化碳减少气相。 在类似的高纯度气体固体过程中的整体水分裂中的IROX / TiO2的AQY是高度的4倍,但仍远非商业活力。

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