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Hierarchical MoS_2 nanosheets integrated Ti_3C_2 MXenes for electrocatalytic hydrogen evolution

机译:分层MoS_2纳米片集成Ti_3C_2 MXenes用于电催化制氢

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In this study, conductive Ti3C2 MXenes were used as a promoter to accelerate charger transfer of MoS2, realizing highly efficient HER electrocatalysis. A facile hydrothermal strategy is demonstrated to be effective for in situ growth of MoS2 nanosheets vertically standing on planar Ti3C2 nanosheets to form hierarchical heterostructures. Beneficial from the opened layer structures and strong interfacial coupling effect, the resulting MoS2/Ti3C2 heterostructures achieve a giant enhancement in HER activity compared with pristine MoS2 nanosheets. More specifically, the catalytic current density induced by MoS2/Ti3C2 heterostructures at an overpotential of similar to 400 mV is nearly 6.2 times as high as that of the pristine MoS2 nanosheets. This work uncovers that the Ti3C2 nanosheets are ideal candidates for construction of highly active electrocatalysts for water splitting. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在这项研究中,导电的Ti3C2 MXenes被用作促进剂来加速MoS2的电荷转移,从而实现了高效的HER电催化。事实证明,一种简便的水热策略可有效地垂直生长在平面Ti3C2纳米片上以形成分层异质结构的MoS2纳米片的原位生长。与原始的MoS2纳米片相比,得益于开放层结构和强大的界面耦合作用,所得的MoS2 / Ti3C2异质结构在HER活性方面实现了巨大的提高。更具体地说,由MoS2 / Ti3C2异质结构在约400 mV的超电势下诱导的催化电流密度几乎是原始MoS2纳米片的6.2倍。这项工作揭示了Ti3C2纳米片是构建用于水分解的高活性电催化剂的理想选择。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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