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A vertical-oriented WS2 nanosheet sensitized by graphene: an advanced electrocatalyst for hydrogen evolution reaction

机译:垂直定向WS2 nanosheet敏化石墨烯:一个高级electrocatalyst析氢反应

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摘要

Electrocatalytic hydrogen production at low overpotential is a promising route towards a clean and sustainable energy. Layered transition metal dichalcogenides (LTMDs) have attracted copious attention for their outstanding activities in hydrogen evolution reaction (HER). However, the horizontally laid nanosheets suffer from a paucity of active edge sites. Herein, we report the successful synthesis of vertical-oriented WS2 nanosheets through a hydrothermal method followed by a facile sulfurization process. Furthermore, the surface of synthesized WS2 nanosheets was decorated by ultrathin reduced graphene oxide (rGO) nanoplates. This is achieved for the first time by bringing the rGO on the surface of verticaloriented WS2 nanosheets, which is conducive to rapid electron transport during the HER process. Significantly, the as-synthesized rGO/WS2 nanosheets exhibit improved HER activity as compared to the undecorated ones. It needs a low overpotential of only 229 mV vs. RHE to afford a current density of 10 mA cm(-2). We believe that this hybrid structure demonstrated remarkable HER activity brought about by a compatible synergism between rGO and WS2.
机译:Electrocatalytic氢产量低过电压是一个有前途的路线走向清洁和可持续的能源。金属dichalcogenides (LTMDs)吸引了为他们的杰出的大量关注活动在氢进化反应(她)。然而,横向铺设nanosheets受苦从一个缺乏活跃的边缘地区。报告的成功合成垂直定向WS2 nanosheets通过水热方法简单硫化过程。的合成二硫化钨nanosheets装饰了超薄降低石墨烯氧化物(rGO)nanoplates。通过将表面rGOverticaloriented WS2 nanosheets,后者有利于快速的电子传递过程中她的过程。rGO / WS2 nanosheets展览提高她的活动与未修饰的。过电压低只有229 mV和流值承受的电流密度马10厘米(2)。相信这种混合结构她的活动所带来的显著兼容rGO, WS2之间的合作。

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