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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Chemically dealloyed Fe-based metallic glass with void channels-like architecture for highly enhanced peroxymonosulfate activation in catalysis
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Chemically dealloyed Fe-based metallic glass with void channels-like architecture for highly enhanced peroxymonosulfate activation in catalysis

机译:化学造成的Fe基金属玻璃,具有空隙通道的架构,用于高度增强的过氧键硫酸盐活化在催化中

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摘要

Metallic glasses (MGs) with their intrinsic disordered atomic structure and widely controllable atomic components have recently emerged as fascinating functional materials in wastewater treatment. Compared to crystalline alloys, the less-noble atomic components in monolithic metallic glass are more efficient to be selectively dissolved during dealloying process. This work reported a facile chemical dealloying approach to fabricate a void channels-like structured MG with the elemental components of Fe73.5Si13.5B9Cu1Nb3 for methylene blue (MB) degradation. Results indicated that the dealloyed Fe73.5Si13.5B9Cu1Nb3 MGs with the void channels-like morphology presented a significant improvement of catalytic efficiency and reusability. The dye degradation reaction rate (K-obs) of the dealloyed Fe73.5Si13.5B9Cu1Nb3 MGs presented 3 times higher than their as-spun MGs. More importantly, the dealloyed Fe73.5Si13.5B9Cu1Nb3 MGs can be reused up to 25 times without significantly loosing catalytic efficiency. It was also found that the dealloyed Fe73.5Si13.5B9Cu1Nb3 MGs exhibited a greater corrosion resistance in the simulated dye solution compared to the as-spun ribbons, demonstrating a robust self-healing ability in catalytic activity. This work provides a novel view for designing MG catalysts with high efficiency and stability in worldwide energy and environmental concerns. (C) 2019 Elsevier B.V. All rights reserved.
机译:金属玻璃(MGS)与它们的内在无序的原子结构和广泛可控原子部件最近出现在废水处理引人入胜的功能材料。相比晶合金,在单片金属玻璃的贵金属原子较少组分是更有效的脱合金过程中被选择性地溶解。这项工作报告一个浅显的化学脱合金的方法来制造空隙通道状结构型MG与Fe73.5Si13.5B9Cu1Nb3的亚甲基蓝(MB)的降解,元素成分。结果表明,与所述空隙通道状形态的脱合金Fe73.5Si13.5B9Cu1Nb3的MG呈现的催化效率和可重用性显著改善。脱合金的Fe73.5Si13.5B9Cu1Nb3的MG的染料降解反应速率(K-OBS)呈现比其初纺的MG高3倍。更重要的是,脱合金Fe73.5Si13.5B9Cu1Nb3的MG可以重复使用多达25次无显著失去催化效率。还发现,相对于初纺带脱合金Fe73.5Si13.5B9Cu1Nb3的MG显示在模拟染料溶液中的更大的耐腐蚀性,这表明在催化活性的健壮自愈能力。这项工作提供了高效率和稳定性在全球能源和环境问题设计MG催化剂新颖的观点。 (c)2019 Elsevier B.v.保留所有权利。

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