Qin X D, Zhu Z W, Liu G, Fu H M, Zhang H W, Wang A M, Li H, Zhang H F
Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Sciences, Shenyang. 110016, China.
University of Chinese Academy of Sciences, Beijing. 100049, China.
Sci Rep. 2015 Dec 14;5:18226. doi: 10.1038/srep18226.
Reactivity and mass loss are considered mutually exclusive in conventional zero-valent metal (ZVM) technology to treat environmental contaminants. Here, we report the outstanding performance of Co-based metallic glass (MG) in degrading an aqueous solution of azo dye, thus eliminating this trade-off. Ball-milled Co-based MG powders completely degrade Acid Orange II at an ultrafast rate. The surface-area-normalized rate constant of Co-based MG powders was one order of magnitude higher than that of Co-based crystalline counterparts and three orders of magnitude higher than that of the widely studied Fe(0) powders. The coordinatively unsaturated local structure in Co-based MG responds to the catalysis for degradation, resulting in very low mass loss. Wide applicability and good reusability were also present. Co-based MG is the most efficient material for azo dye degradation reported thus far, and will promote the practical application of MGs as functional materials.
在传统的零价金属(ZVM)技术中,反应活性和质量损失被认为是相互排斥的,用于处理环境污染物。在此,我们报告了钴基金属玻璃(MG)在降解偶氮染料水溶液方面的出色性能,从而消除了这种权衡。球磨钴基金属玻璃粉末能以超快的速度完全降解酸性橙II。钴基金属玻璃粉末的比表面积归一化速率常数比钴基晶体对应物高一个数量级,比广泛研究的Fe(0)粉末高三个数量级。钴基金属玻璃中配位不饱和的局部结构对降解催化有响应,导致质量损失非常低。还具有广泛的适用性和良好的可重复使用性。钴基金属玻璃是迄今为止报道的用于偶氮染料降解最有效的材料,并将促进金属玻璃作为功能材料的实际应用。