首页> 美国卫生研究院文献>iScience >Ultrafine CoP/Co2P Nanorods Encapsulated in Janus/Twins-type Honeycomb 3D Nitrogen-Doped Carbon Nanosheets for Efficient Hydrogen Evolution
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Ultrafine CoP/Co2P Nanorods Encapsulated in Janus/Twins-type Honeycomb 3D Nitrogen-Doped Carbon Nanosheets for Efficient Hydrogen Evolution

机译:超细CoP / Co2P纳米棒封装在Janus / Twins型蜂窝3D氮掺杂碳纳米片中可有效释放氢气

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摘要

In this study, we report a Janus- or twins-type honeycomb 3D porous nitrogen-doped carbon (NC) nanosheet array encapsulating ultrafine CoP/Co P nanorods supported on Ti foil (CoP/Co P@NC/Ti) as a self-supported electrode for efficient hydrogen evolution. The synthesis and formation mechanism of 3D porous NC nanosheet array assembled into a honeycomb layer with ultrafine CoP/Co P single-crystal nanorods encapsulated is systematically presented. The CoP/Co P@NC/Ti electrode exhibits low overpotentials (η ) of 31, 49, and 64 mV at a current density of −10 mA cm in 0.5 M H SO , 1.0 KOH, and 1.0 M PBS, respectively, exceeding the overwhelming majority of the documented transition metal phosphide-based electrocatalysts. Density functional theory calculation reveals that the superior electrocatalytic performance for hydrogen evolution reaction could be ascribed to the strong coupling effects of the reactive facets of CoP and Co P with the 3D porous NC nanosheet, making it exhibit a more thermo-neutral hydrogen adsorption free energy.
机译:在这项研究中,我们报告了Janus或Twins型蜂窝3D多孔氮掺杂碳(NC)纳米片阵列,该阵列封装了支撑在Ti箔上的超细CoP / Co P纳米棒(CoP / Co P @ NC / Ti),作为自支持电极,可有效释放氢气。系统地提出了3D多孔NC纳米片阵列组装成蜂窝状并包裹超细CoP / Co P单晶纳米棒的合成和形成机理。 CoP / Co P @ NC / Ti电极在0.5MH SO,1.0 KOH和1.0 M PBS中的电流密度分别为-10 mA cm时表现出31、49和64mV的低过电势(η)绝大多数已记录在案的过渡金属磷化物基电催化剂。密度泛函理论计算表明,氢放出反应的优异电催化性能可以归因于CoP和Co P的反应面与3D多孔NC纳米片的强耦合作用,使其表现出更高的热中性氢吸附自由能。

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