材料科学
化学工程
锑
超级电容器
吸附
氧化物
价(化学)
电化学
Atom(片上系统)
烧焦
多孔性
多孔介质
电极
X射线光电子能谱
吸收光谱法
微型多孔材料
纳米技术
光谱学
燃烧
电容
化学稳定性
瓦伦西亚
扩展X射线吸收精细结构
氧化铁
费米能级
化学物理
无机化学
溶剂热合成
作者
Yonghui Tu,Xiaoxiao Yu,Yangbo Qiu,Long‐Fei Ren,He Li,Guangzhi Hu,Jiahui Shao,Liang Wu,Xinyuan Zhu
标识
DOI:10.1002/adfm.202517917
摘要
Abstract Exhausted adsorbents from Sb‐laden wastewater are hazardous and generally landfilled. This study presents that exhausted Sb adsorbents can be thermally reduced and recycled as supercapacitor electrode. Specifically, ordered hierarchical porous amidoxime‐polyacrylonitrile (OHPAPAN) is synthesized for highly efficient Sb(V) ions adsorption and then thermal conversion of exhausted OHPAPAN to Sb‐contained char, rendering excellent electrochemical activity. Sb 0 atom clusters are found to form during recycling process by X‐ray absorption spectroscopy (XAFS), along with Sb oxide with average valence of +2.63. The 4d and 4p orbital of Sb cluster exhibits abundant electron state in Fermi level and valence band, making a pseudocapacitive contribution. Moreover, ordered hierarchical pore is confirmed to be inherited in the char from OHPAPAN, further enhancing electrical double layer capacitance. Coordination configuration of Sb and N/O becomes more stable from sexadentate (coordinate atom distance of 1.98 and 2.66 Å) in OHPAPAN to ≈2 N/O ligands in Sb‐contained char (1.97 Å), underlining the shorter atom distance and higher orbital energy for Sb immobilization. Consequently, the capacitance maintains 96.1% after 6000 cycles, indicating that its excellent stability can rival relevant commercial electrode. This study offers a novel insight that Sb mineral sources can be derived from industrial wastewater, not just mining activity.
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