State Key Laboratory of Metastable Materials Science and Technology, Yanshan University, Qinhuangdao 066004, People's Republic of China.
Nanotechnology. 2019 Jan 18;30(3):035701. doi: 10.1088/1361-6528/aaeadd. Epub 2018 Nov 12.
Black phosphorus (BP) has recently drawn great attention in the field of electrocatalysis due to its distinct electrocatalytic activity for the oxygen evolution reaction (OER). However, the slow OER kinetics and the poor environmental stability of BP seriously limits its overall OER performance and prevents its electrocatalysis application. Here, sulfur (S)-doped BP nanosheets, which are prepared using high-pressure synthesis followed by liquid exfoliation, have been demonstrated to have much better OER electrocatalytic activity and environmental stability compared to their undoped counterparts. The S-doped BP nanosheets display a Tafel slope of 75 mV dec, which is a favorable value refered to the kinetics of OER in electrochemical tests. Notably, there is no degradation of S-doped BP nanosheets after six days exposure to ambient, indicating an excellent environmental stability of the S-doped BP. The density functional theory calculations show that the OER activity of BP originate from its crystal defects and heteroatom S doping can effectively enhance its OER activity and stability. These results highlight the doping effect on electrocatalytic activities and stability of BP and provide a simple and effective method to design highly efficient OER catalysts based on the modification of BP.
黑磷(BP)由于其对析氧反应(OER)具有独特的电催化活性,最近在电催化领域引起了极大的关注。然而,BP 的缓慢 OER 动力学和较差的环境稳定性严重限制了其整体 OER 性能,阻碍了其电催化应用。在这里,使用高压合成后再进行液相剥离的方法制备了硫(S)掺杂 BP 纳米片,与未掺杂的 BP 相比,其具有更好的 OER 电催化活性和环境稳定性。S 掺杂 BP 纳米片的塔菲尔斜率为 75 mV dec,这是电化学测试中 OER 动力学的一个有利值。值得注意的是,S 掺杂 BP 纳米片在暴露于环境中六天后没有降解,表明其具有优异的环境稳定性。密度泛函理论计算表明,BP 的 OER 活性源于其晶体缺陷,而杂原子 S 掺杂可以有效提高其 OER 活性和稳定性。这些结果突出了掺杂对 BP 电催化活性和稳定性的影响,并为基于 BP 修饰设计高效 OER 催化剂提供了一种简单有效的方法。