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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Solar light driven photoelectrocatalytic hydrogen evolution and dye degradation by metal-free few-layer MoS2 nanoflower/TiO2(B) nanobelts heterostructure
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Solar light driven photoelectrocatalytic hydrogen evolution and dye degradation by metal-free few-layer MoS2 nanoflower/TiO2(B) nanobelts heterostructure

机译:无金属少层MOS2纳米辊/ TiO2(B)纳米核异质结构的太阳能光驱动光电催化氢气催化和染料降解

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摘要

A rational design of metal-free hierarchical nanostructures is critical for achieving next-generation photo catalytic system. Transition metal dichalcogenide, e.g., MoS2 based heterostructures (HSs) with shape-controlled TiO2 have attracted great attention in visible light electrocatalysis owing to their unique crystal structure, morphology and chemical properties. Herein, we demonstrate a low temperature solvothermal growth of few layer MoS2 nanoflowers (NFs) over the porous TiO2(B) nanobelts (NBs) for enhanced hydrogen evolution reaction (HER) in acidic media as well as improved photocatalytic degradation of organic dye rhodamine-B (RhB) under visible light. Few-layer MoS2 NFs with lateral sizes 130-350 nm were successfully grown on TiO2 NBs, as revealed from the high resolution TEM imaging. EDS mapping confirms the elemental composition and their spatial distribution in the HS sample. MoS2/TiO2 NBs HS exhibits extremely high adsorption ability (66% after 40 min) under dark as well as enhanced photocatalytic degradation efficiency (80% after 60 min) of RhB under visible light irradiation. A systematic photoelectrochemical measurements demonstrate that the MoS2/TiO2 NBs HS exhibits excellent HER activity in acidic electrolyte with an overpotential and estimated Tafel slope to be -320 mV at 10 mA/cm(2) and 95 mV/dec, respectively, which is much lower than that of the pristine TiO2 NBs measured to be-792 mV and 135 mV/dec, respectively, under visible light. It is shown that the Volmer-Heyrovsky mechanism leads to the extremely high hydrogen generation at the working electrode made with edge-defect enriched few layer MoS2 on porous TiO2 NBs.
机译:无金属等级纳米结构的合理设计对于实现下一代照片催化系统至关重要。过渡金属二硫代甲胺,例如,基于MOS2的异质结构(HSS)由于其独特的晶体结构,形态和化学性质而在可见光电隔离中引起了极大的关注。在此,我们在多孔TiO 2(B)纳米座(NBS)上证明了几层MOS2纳米母线(NFS)的低温溶液生长,用于增强酸性培养基中的氢进化反应(HER)以及有机染料罗丹明的有机染料降解的改善的光催化降解 - b(rhb)在可见光下。在TiO 2 NB上成功生长了横向尺寸的几层MOS2 NFS,从高分辨率TEM成像揭示。 EDS映射证实了HS样品中的元素组成及其空间分布。 MOS2 / TiO2 NBS HS在暗中表现出极高的吸附能力(40分钟后66%),并且在可见光照射下,RHB的光催化降解效率(60分钟后80%)。系统的光电化学测量表明MOS2 / TiO2 NBS HS在酸性电解质中表现出优异的酸性电解质活性,并且估计的Tafel斜率分别为-320mV(2)和95 mV / Dec,这是多少低于可见光下测量为-792mV和135mV / Dec的原始TiO2 NBs。结果表明,Volmer-Heyrovsky机构导致用边缘缺陷制成的工作电极处的极高氢生成,富含较少的几个层MOS2在多孔TiO 2 NB上。

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