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Visible Light-Driven Photoelectrocatalytic Water Splitting Using Z-Scheme Ag-Decorated MoS2/RGO/NiWO4 Heterostructure

机译:使用Z-Schement Ag装饰MOS2 / RGO / Niwo4异质结构的可见光光驱动光电催化水分裂

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Herein, we have successfully constructed a solid-state Z-scheme photosystem with enhanced light absorption capacity by combining the optoelectrical properties of AgNPs with those of the MoS_(2)/RGO/NiWO_(4) (Ag-MRGON) heterostructure. The Ag-MRGON Z-scheme system demonstrates improved photo-electrochemical (PEC) water-splitting performance in terms of applied bias photon-to-current conversion efficiency (ABPE), which is 0.52%, and 17.3- and 4.3-times better than those of pristine MoS_(2) and MoS_(2)/NiWO_(4) photoanodes, respectively. The application of AgNPs as an optical property enhancer and RGO as an electron mediator improved the photocurrent density of Ag-MRGON to 3.5 mA/cm~(2) and suppressed the charge recombination to attain the photostability of ~2 h. Moreover, the photocurrent onset potential of the Ag-MRGON heterojunction (i.e., 0.61 V_(RHE)) is cathodically shifted compared to those of NiWO_(4) (0.83 V_(RHE)), MoS_(2) (0.80 V_(RHE)), and MoS_(2)/NiWO_(4) heterojunction (0.73 V_(RHE)). The improved PEC water-splitting performance in terms of ABPE, photocurrent density, and onset potential is attributed to the facilitated charge transfer through the RGO mediator, the plasmonic effect of AgNPs, and the proper energy band alignments with the thermodynamic potentials of hydrogen and oxygen evolution.
机译:这里,我们通过将AgNP的光电性能与MOS_(2)/ RGO / NiWO_(4)(Ag-MRGON)异质结构相结合,成功地构造了具有增强的光吸收能力的固态Z方案光系统。 AG-MRGON Z-Scheme System在施加的偏置光子 - 电流转化效率(ABPE)方面表现出改善的光电化学(PEC)水分解性能,其比0.52%,17.3和4.3倍分别是原始MOS_(2)和MOS_(2)/ NIWO_(4)光电池的那些。 AgNP作为光学性质增强剂和RGO作为电子介体的施用改善了Ag-Mrgon至3.5mA / cm〜(2)的光电流密度,并抑制了电荷重组以获得〜2 H的光稳定性。此外,与NiWO_(4)(0.83V_(RHE)),MOS_(2)相比,AG-MRGON异质结(IE,0.61 V_(RHE)的光电流发作电位是阴极移位(0.83 V_(RHE))(0.80 V_ (RHE)),和MOS_(2)/ NIWO_(4)异质结(0.73 V_(RHE))。通过ABPE,光电流密度和发作潜力来改善PEC水分裂性能,归因于通过RGO介体的便利电荷转移,AGNP的等离子体效应以及与氢气热力学电位的适当的能带对准进化。

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