Publications by authors named "Bing-Chuan Gu"

Vacancy control can significantly enhance the performance of photocatalytic semiconductors for water purification. However, little is known about the mechanisms and approaches that could generate stable large vacancies. Here, we report a new mechanism to induce vacancy formation on nanocrystals for enhanced photocatalytic activity: the introduction of mesopores.

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The catalytic activity of counter electrodes (CEs) severely restricts the photovoltaic conversion efficiency of dye-sensitized solar cells. However, electrons trapped by bulk defects greatly reduce the catalytic activity of the CE. In this study, we report a novel InS-C-Au hybrid structure designed by simply decorating Au particles on the surface of carbon-coated hierarchical InS flower-like architectures, which could avoid the abovementioned problems.

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