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Embedding laser generated nanocrystals in BiVO4 photoanode for efficient photoelectrochemical water splitting

机译:将激光生成的纳米晶体嵌入BiVO4光电阳极中以实现有效的光电化学水分解

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摘要

Addressing the intrinsic charge transport limitation of metal oxides has been of significance for pursuing viable PEC water splitting photoelectrodes. Growing a photoelectrode with conductive nanoobjects embedded in the matrix is promising for enhanced charge transport but remains a challenge technically. We herein show a strategy of embedding laser generated nanocrystals in BiVO4 photoanode matrix, which achieves photocurrent densities of up to 5.15 mA cm−2 at 1.23 VRHE (from original 4.01 mA cm−2) for a single photoanode configuration, and 6.22 mA cm−2 at 1.23 VRHE for a dual configuration. The enhanced performance by such embedding is found universal owing to the typical features of laser synthesis and processing of colloids (LSPC) for producing ligand free nanocrystals in desired solvents. This study provides an alternative to address the slow bulk charge transport that bothers most metal oxides, and thus is significant for boosting their PEC water splitting performance.
机译:解决金属氧化物的固有电荷传输限制对于追求可行的PEC水分解光电极具有重要意义。生长具有嵌入基质中的导电纳米物体的光电极有望增强电荷传输,但在技术上仍然是一个挑战。我们在此展示了一种将激光生成的纳米晶体嵌入BiVO4光阳极矩阵的策略,该策略在1.23 VRHE时可实现高达5.15 mA cm -2 的光电流密度(从原始的4.01 mA cm -2 )用于单个光电阳极配置,而6.22µmA cm −2 在1.23µVRHE下用于双重配置。由于激光合成和胶体(LSPC)的典型特征以在所需溶剂中生产不含配体的纳米晶体,发现通过这种嵌入增强的性能是普遍的。这项研究为解决困扰大多数金属氧化物的缓慢的电荷迁移提供了一种替代方法,因此对于提高其PEC的水分解性能具有重要意义。

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