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Production of SnS2 Nanostructure as Improved Light-Assisted Electrochemical Water Splitting

机译:SnS2纳米结构的生产作为改进的光辅助电化学水分解

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摘要

Tin disulfide (SnS2) has gained a lot of interest in the field of converting solar energy into chemical fuels in light-assisted electrochemical water splitting due to its visible-light band gap and high electronic mobility. However, further decreasing the recombination rate of electron-hole pairs and increasing the density of active states at the valence band edge of the photoelectrodes were a critical problem. Here, we were successful in fabricating the super-thin SnS2 nanostructure by a hydrothermal and solution etching method. The super-thin SnS2 nanostructure as a photo-electrocatalytic material exhibited low overpotential of 0.25 V at the current density of −10 mA·cm−2 and the potential remained basically unchanged after 1000 cycles in an H2SO4 electrolyte solution, which was better than that of the SnS2 nanosheet and SnS/SnS2 heterojunction nanosheet. These results show the potential application of super-thin SnS2 nanostructure in electrochemical/photo-electrocatalytic field.
机译:由于其可见光带隙和高电子迁移率,二硫化锡(SnS2)在光辅助电化学水分解中将太阳能转化为化学燃料的领域中引起了广泛兴趣。然而,进一步降低电子-空穴对的复合率并增加在光电电极的价带边缘的活性态的密度是关键问题。在这里,我们成功地通过水热和溶液蚀刻方法制造了超薄的SnS2纳米结构。超薄的SnS2纳米结构作为光电催化材料,在-10 mA·cm -2 的电流密度下显示出0.25 V的低过电势,并且在H2SO4电解质中经过1000次循环后电势基本保持不变溶液,优于SnS2纳米片和SnS / SnS2异质结纳米片。这些结果表明超薄SnS2纳米结构在电化学/光电催化领域的潜在应用。

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