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首页> 外文期刊>Angewandte Chemie >Porous Tantalum Nitride Single Crystal at Two-Centimeter Scale with Enhanced Photoelectrochemical Performance
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Porous Tantalum Nitride Single Crystal at Two-Centimeter Scale with Enhanced Photoelectrochemical Performance

机译:多孔钽氮化物单晶为双厘米刻度,具有增强的光电化学性能

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摘要

Porous tantalum nitride (Ta3N5) single crystals, combining structural coherence and porous microstructure, would substantially improve the photoelectrochemical performance. The structural coherence would reduce the recombination of charge carriers and maintain excellent transport properties while the porous microstructure would not only reduce photon scattering but also facilitate surface reactions. Here, we grow bulk-porous Ta3N5 single crystals on a two-centimeter scale with (002), (023), and (041) facets, respectively, and show significantly enhanced photoelectrochemical performance. We show the preferential facet growth of porous crystals in a lattice reconstruction strategy in relation to lattice match and lattice channel. We present the facet engineering to enhance light absorption, exciton lifetime and transport properties. The porous Ta3N5 single crystal boosts photoelectrochemical oxidation of alcohols with the (002) facet showing the highest performance of >99 % alcohol conversion and >99 % aldehyde/ketone selectivity.
机译:多孔氮化物(Ta3N5)单晶,组合结构相干和多孔微观结构,显着提高光电化学性能。结构相干性会降低电荷载体的重组,并保持优异的运输性质,而多孔微观结构不仅可以减少光子散射,而且促进表面反应。这里,我们将散装多孔TA3N5单晶分别在双厘米刻度上,分别用(002),(023)和(041)刻面,显示出显着提高的光电化学性能。我们展示了与晶格匹配和格子通道有关的晶格重建策略中多孔晶体的优先缩面生长。我们介绍了方面的工程,以增强光吸收,激子寿命和运输性能。多孔TA3N5单晶用(002)小平面提高醇的光电化学氧化,显示出最高性能> 99%的醇转化率和> 99%醛/酮选择性。

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