Strained Zero‐Valent Iron for Highly Efficient Heavy Metal Removal
Strained Zero‐Valent Iron for Highly Efficient Heavy Metal Removal
复制标题
应变零价铁可高效去除重金属
DOI:
10.1002/adfm.202200498
复制
发表时间:
2022
影响因子:
19
通讯作者:
Lizhi Zhang
中科院分区:
文献类型:
--
作者:
Kai Wei;Hao Li;Huayu Gu;Xiufan Liu;Cancan Ling;Shiyu Cao;Meiqi Li;Minzi Liao;Xing Peng;Yanbiao Shi;Wenjuan Shen;Chuan Liang;Zhihui Ai;Lizhi Zhang
Microscale zero‐valent iron is one of the most important multifunctional environmental remediation materials, yet its passivated iron oxide shell hampers the transportation of inherent electrons. Herein, the authors exert tensile strain onto mZVI by interstitial boron doping that destabilizes lattice FeFe interactions, thereby liberating the electrons trapped in the iron reservoir. Tensile strain also upshifts the equilibrated Fermi level at the iron/iron oxide Ohmic heterojunction, thus populating the oxide shell with abundant electrons for robust heavy metal sequestration. Strained‐mZVI exhibits a 62 times faster Cr(VI) removal rate than its unstrained counterpart and can successfully treat industrial wastewater such as landfill leachate, electroplating, and chromium effluents. The excellent property and exceedingly low cost ($2000 ton−1) of strained‐mZVI results in its great potential to remediate heavy metal‐contaminated water and soil.