纳米颗粒
煅烧
氢氧化物
氧化物
材料科学
化学工程
五元
无机化学
电化学
电解质
催化作用
纳米技术
化学
冶金
物理化学
电极
合金
有机化学
工程类
作者
Timothy G. Ritter,Abhijit H. Phakatkar,Md Golam Rasul,Mahmoud Tamadoni Saray,Lioudmila V. Sorokina,Tolou Shokuhfar,Josué M. Gonçalves,Reza Shahbazian‐Yassar
标识
DOI:10.1016/j.xcrp.2022.100847
摘要
Conventional synthesis techniques for high entropy materials often require prolonged processes or the use of complex fabrication steps. Here, we report on a scalable method to synthesize high entropy hydroxide and oxide nanoparticles using electrochemical synthesis in an aqueous environment. The current density parameter was set to create a non-equilibrium condition where the hydrogen evolution reaction results in a turbulent environment facilitating the formation of nanoparticles within the electrolyte. Using this approach, we demonstrate the synthesis of both binary (Fe, Mn) and quinary (Fe, Mn, Ni, Ca, Mg) metal hydroxide and oxide nanoparticles. The chemical and microscopy analysis shows that the high entropy nanoparticles can be synthesized as a hydroxide without any post processing and as an oxide through a calcination process with atomic scale mixing of all elements. The synthesis of high entropy nanoparticles is important for applications targeting catalysis, energy storage and conversion, filtration, and environmental engineering.
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