材料科学
固氮
氮气
接口(物质)
桥(图论)
纳米技术
固定(群体遗传学)
工程物理
化学工程
复合材料
生物
生物化学
工程类
有机化学
解剖
基因
化学
毛细管作用
毛细管数
作者
Kun Cheng,Shaobin Li,Qingyu Cheng,Li Zhang,Yufeng Jiang,Fengbo Li,Huiyuan Ma,Deqing Zhang
标识
DOI:10.1002/adfm.202417914
摘要
Abstract The underutilization of active sites limits the performance enhancement of 2D transition metal boride (MBene) in electrocatalytic nitrogen reduction reaction (NRR). Herein, a highly efficient NRR electrocatalyst with S atoms bridging Fe and Mo atoms on the surface of MBene is successfully constructed by using an active site electron optimization strategy, which increases the charge density around the Mo active site and enhances the activation ability of the catalyst to N 2 molecules. It is noteworthy that FeS 2 ‐MBene demonstrates a low intrinsic potential for NRR (−0.2 V vs RHE). It is more favorable for the adsorption of nitrogen atoms in comparison to hydrogen atoms, thereby it can effectively inhibit the hydrogen evolution reaction (HER). Under a potential of −0.2 V versus RHE, the ammonia yield rate is 37.13 ± 1.31 µg h −1 mg −1 , and the FE is 55.97 ± 2.63%. Density functional theory (DFT) calculations demonstrate that Mo on the surface of MBene serves as a site for the adsorption of N 2 . The formation of the heterostructure enhances electron transfer, resulting in the Mo active site becoming an electron‐rich state in favor of subsequent hydrogenation steps. This work offers significant insights into the design and utilization of 2D MBene‐based catalysts in NRR.
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