材料科学
氨生产
纳米线
氨
催化作用
纳米技术
可逆氢电极
法拉第效率
电催化剂
电化学
密度泛函理论
产量(工程)
化学工程
电极
物理化学
化学
工程类
冶金
计算化学
生物化学
有机化学
参比电极
作者
Xuejing Liu,Xiaolong Xu,Faying Li,Jingyi Xu,Hongmin Ma,Xu Sun,Dan Wu,Changwen Zhang,Xiang Ren,Qin Wei
标识
DOI:10.1021/acsami.2c10323
摘要
Developing efficient electrocatalysts to realize the nitrate reduction reaction (eNO3-RR) for ammonia synthesis as an alternative to the traditional Haber-Bosch production process is of great significance. Herein, the heterostructured Bi2S3/MoS2 nanoarrays were successfully synthesized by Bi2S3 nanowires anchored on MoS2 nanosheets. Owing to the interfacial coupling effect, both particular surface area and exposure active sites increase. Density functional theory further uncovered that the excellent activity originates from charge transfer of the interface and a low potential barrier of 0.58 eV for hydrogenation of *NO to *NOH on Bi2S3/MoS2. Compared with pure Bi2S3 and MoS2 catalysts, the heterostructured Bi2S3/MoS2 nanoarrays exhibit a superior NH3 yield of 15.04 × 10-2 mmol·h-1·cm-2 and a Faraday efficiency of 88.4% at -0.8 V versus the reversible hydrogen electrode. This work provides a new avenue to explore advanced electrocatalysts, which is expected to shorten the distance from the practical application of the eNO3-RR technology.
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