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Hierarchical nanowire arrays based on carbon nanotubes and Co3O4 decorated ZnO for enhanced photoelectrochemical water oxidation

机译:基于碳纳米管和Co3O4装饰的ZnO的分层纳米线阵列,用于增强光电化学水氧化

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摘要

A highly enhanced activity for photoelectrochemical water splitting was achieved by fabricating carbon nanotube (CNT) and Co3O4 decorated hierarchical ZnO nanowire (NW) arrays via a facile stepwise synthesis strategy. The ternary CNT-ZnO-Co3O4 NW composite exhibits an increased photocurrent density (1.9 mA cm(-2) at 0.6 V vs. Ag/AgCl, 2.7 times larger than that of the pristine ZnO NWs) and improved incident photon to current conversion efficiency (52.5% at 340 nm, 5.1 times higher than that of the pristine ZnO NWs) as a photoanode under AM 1.5G simulated sunlight. This enhancement is attributed to the specific heterogeneous ternary architecture, which results in promoted electron-hole charge separation and transfer, decreased water oxidation overpotential as well as increased reaction rates of water splitting by decorating ZnO NWs with CNTs and Co3O4.
机译:通过简便的逐步合成策略,通过制造碳纳米管(CNT)和装饰有Co3O4的分层ZnO纳米线(NW)阵列,实现了光电化学水分解的高度增强的活性。三元CNT-ZnO-Co3O4 NW复合材料显示出增加的光电流密度(0.6 V vs.Ag/AgCl在1.9 mA cm(-2),是原始ZnO NW的2.7倍)并改善了入射光子到电流的转换效率(在340 nm下为52.5%,比原始ZnO NW高5.1倍)在AM 1.5G模拟阳光下作为光电阳极。这种增强归因于特定的异质三元体系结构,该结构通过使用CNT和Co3O4修饰ZnO NW,从而促进了电子-空穴电荷的分离和转移,降低了水氧化过电位以及提高了水分解的反应速率。

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