分解水
过电位
电化学
电解
析氧
阴极
阳极
电解水
材料科学
催化作用
化学工程
无机化学
纳米技术
化学
电极
电解质
物理化学
生物化学
光催化
工程类
作者
Chunyan Xu,Fengxian Wu,Chun Hu,Liying Yang,Shougen Yin
标识
DOI:10.1021/acsanm.3c03640
摘要
Electrochemical water splitting technology is a green, clean, and pollution-free energy technology that can produce hydrogen (H2) and oxygen (O2), which is of great significance for alleviating the world energy questions and improving the surrounding environment. Therefore, it is important to develop and prepare low-cost, high-activity, and stable electrocatalysts to improve water splitting technology. In this study, the P-doped bifunctional catalyst (P–Nb4C3Tx) was prepared by introducing the P element into a few layers of Nb4C3Tx by low-temperature phosphating. The low-temperature phosphating can enhance the HER and OER behaviors and achieve optimal overall water splitting ability. It needs only an overpotential of 92 mV to achieve 10 mA·cm–2 for HER and only 278 mV for OER in 1.0 M KOH solution. When P–Nb4C3Tx served as the anode and cathode to construct a water electrolysis cell, a small cell voltage of 1.572 V is needed at 10 mA·cm–2 in 1.0 M KOH. This research is viable for the overall water splitting.
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