Xu Xiao, Ji Shan, Wang Hui, Wang Xuyun, Linkov Vladimir, Wang Rongfang
State Key Laboratory Base for Eco-Chemical Engineering, College of Chemical Engineering, Qingdao University of Science and Technology, Qingdao 266042, China.
College of Biological, Chemical Science and Engineering, Jiaxing University, Jiaxing 314001, China.
J Colloid Interface Sci. 2022 Jun;615:163-172. doi: 10.1016/j.jcis.2022.01.197. Epub 2022 Feb 1.
Urea electrolysis is a promising hydrogen generation and urea-rich wastewaters treatment technology, which requires the development of highly active electrocatalysts. In this study, porous hetero-structured nanosheet electrocatalyst (NiO/NiP/NF), composed of crystalline NiO and NiP, is prepared via the in-situ acid etching and gas-phase phosphating method, and the obtained NiO/NiP/NF material is applied as efficient urea oxidation and hydrogen evolution catalyst for the overall splitting of urea-containing wastewaters. An electrolyzer containing NiO/NiP/NF||NiO/NiP/NF electrode pair in an alkaline urea aqueous solution requires a potential of just 1.457 V to reach a current density of 10 mA cm, lower than that of 1.490 V needed for a Pt/C/NF||RuO/NF electrolyzer to operate under the same current density. The study demonstrates the synergistic effect between NiO/NiP nanosheets as well as their uniform pore structure formed by the Kirkendall effect, resulting in enhanced electrocatalytic performance in hydrogen production by urea electrolysis.
尿素电解是一种很有前景的制氢及处理富尿素废水的技术,这需要开发高活性的电催化剂。在本研究中,通过原位酸蚀刻和气相磷化法制备了由结晶NiO和NiP组成的多孔异质结构纳米片电催化剂(NiO/NiP/NF),并将所得的NiO/NiP/NF材料用作高效的尿素氧化和析氢催化剂,用于含尿素废水的全分解。在碱性尿素水溶液中,一个包含NiO/NiP/NF||NiO/NiP/NF电极对的电解槽仅需1.457 V的电位就能达到10 mA cm的电流密度,低于在相同电流密度下Pt/C/NF||RuO/NF电解槽运行所需的1.490 V。该研究证明了NiO/NiP纳米片之间的协同效应以及由柯肯达尔效应形成的均匀孔结构,从而提高了尿素电解制氢中的电催化性能。