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Fe‐based Metallic Glasses in Functional Catalytic Applications
Chemistry - An Asian Journal ( IF 4.1 ) Pub Date : 2018-10-18 , DOI: 10.1002/asia.201801082
Lai-Chang Zhang 1 , Shun-Xing Liang 1
Affiliation  

With an intrinsically disordered atomic structure and a widely tunable atomic constituent, metallic glasses (MGs) have been extensively studied as promising catalysts in different catalytic fields. Particularly, Fe‐based MGs with high catalytic activity, relatively low material cost, and environmental friendly compatibility also emerge as advanced catalysts. This review systematically discusses the recent advances of Fe‐based MGs in catalytic applications, including wastewater remediation based on reductive degradation by multicomponent Fe‐based MGs, oxidative degradation by introduction of advanced oxidation processes (AOPs) and nanocrystallization applied in Fe‐based MGs up to date, and renewable energy conversion, with purposes of revealing Fe‐based MG catalysts in the further improvement of catalytic performance and exploiting their promising catalytic abilities in a widely catalytic field.

中文翻译:

功能催化应用中的铁基金属玻璃

具有本质上无序的原子结构和广泛可调的原子组成,金属玻璃(MGs)已被广泛研究为在不同催化领域中很有希望的催化剂。特别是,具有高催化活性,相对较低的材料成本和对环境友好的相容性的铁基MG也已成为先进的催化剂。这篇综述系统地讨论了基于Fe的MG在催化应用中的最新进展,包括基于多组分Fe基MG的还原降解的废水修复,通过引入高级氧化工艺(AOP)的氧化降解以及在基于Fe的MG中应用的纳米结晶化。迄今为止,以及可再生能源的转化,
更新日期:2018-10-18
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