材料科学
二氧化碳重整
催化作用
合成气
烧结
甲烷
化学工程
纳米颗粒
纳米技术
碳纤维
镍
冶金
复合材料
有机化学
复合数
化学
工程类
作者
Dedong He,Yimin Zhang,Tan Li,Dingkai Chen,Sheng Wang,Lei Zhang,Jiangping Liu,Xiaohua Cao,Jichang Lu,Yongming Luo
标识
DOI:10.1002/adfm.202412895
摘要
Abstract Conversion of CO 2 and CH 4 into syngas offers a promising route to reduce emissions of greenhouse gases, which facilitates large‐scale carbon fixation and boosts carbon‐neutral goal. The main obstacle for CO 2 /CH 4 reforming is the lack of durable catalysts showing both high metal‐exposure and high‐temperature structure stability, since the reported Ni‐based catalysts have difficulty in avoiding deactivation by sintering metal at high temperature. Herein, ultra‐small Ni nanoparticles, which display multiple characteristics of high surface‐exposure and stabilized structure, are constructed from the evolution of atomically dispersed low‐valent nickel under a dually confined microenvironment. Consequently, the developed strategy can not only break the stable‐exposure trade‐off in heterogeneous catalysis but also provide new opportunity for the engineering of high‐performance and sintering‐resistant reforming catalysts as well as other durable heterogeneous catalysts.
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