化学
纳米技术
氢
电子结构
化学物理
计算化学
材料科学
有机化学
作者
Hao Wang,Xu Xiao,Shuyuan Liu,Chao‐Lung Chiang,Xiaoxiao Kuai,Chun‐Kuo Peng,Yu‐Chang Lin,Xing Meng,Jianqing Zhao,Jin‐Ho Choi,Yan‐Gu Lin,Jong‐Min Lee,Lijun Gao
摘要
The activity and accessibility of MoS2 edge sites are critical to deliver high hydrogen evolution reaction (HER) efficiency. Here, a porous carbon network confining ultrasmall N-doped MoS2 nanocrystals (N-MoS2/CN) is fabricated by a self-templating strategy, which realizes synergistically structural and electronic modulations of MoS2 edges. Experiments and density functional theory calculations demonstrate that the N dopants could activate MoS2 edges for HER, while the porous carbon network could deliver high accessibility of the active sites from N-MoS2 nanocrystals. Consequently, N-MoS2/CN possesses superior HER activity with an overpotential of 114 mV at 10 mA cm-2 and excellent stability over 10 h, delivering one of best MoS2-based HER electrocatalysts. Moreover, this study opens a new venue for optimizing materials with enhanced accessible catalytic sites for energy-related applications.
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