Systematic Exploration of WO3/TiO2 Heterojunction Phase Space for Applications in Photoelectrochemical Water Splitting

Journal of Physical Chemistry C(2022)

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摘要
Recent work has shown that heterojunction photoelectrodes can achieve synergistically higher water splitting activity than their parent materials. To optimize the performance in such layered systems, it is necessary to develop new methods capable of assessing heterojunction phase space. Herein, we explore WO3/TiO2 heterojunction phase space as a model system. Using chemical vapor deposition, 71 unique photoanodes were grown (15 single-layer; 56 heterojunctions). The materials were physically characterized using X-ray diffraction, Raman spectroscopy, scanning electron microscopy, energydispersive X-ray spectroscopy analysis, and ultraviolet-visible transmission spectroscopy. Various key performance indicators were measured. Within this WO3/TiO2 heterojunction phase space, the onset potentials ranged from similar to 0.45 to similar to 0.81 VRHE; the incident-photonto-current efficiencies at 350, 375, and 400 nm ranged from similar to 0.6 to similar to 50.9, similar to 0.1 to similar to 30.0, and similar to 0 to similar to 15.6%, respectively; and the theoretical solar photocurrents ranged from similar to 0.01 to similar to 0.94 mA cm(-2). Contour plots allowed us to identify regions of heterojunction phase space with high activity and establish trends. We identified an electronic barrier to charge transfer between the heterojunction layers that required a sufficiently high applied potential (>= 1.0 VRHE) to be surpassed for synergetic improvements in activity to be observed. We recommend that the methods developed herein, for assessing the performance of sample libraries of heterojunction photoelectrodes, be used alongside combinatorial synthesis methods and highthroughput photoelectrochemical measurements to optimize promising heterojunction systems more rigorously and rapidly.
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关键词
heterojunction phase space
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