Facial synthesis of carbon nanotube interweaved FeOOH as chloride-insertion electrode for highly efficient faradic capacitive deionization

被引:0
作者
Zhang, Lu [1 ,2 ]
Chong, Harry Lye Hin [1 ,2 ]
Luo, Dan [3 ]
El-Bahy, Salah M. [4 ]
Moh, Pak Yan [2 ]
Xu, Xingtao [3 ]
El-Bahy, Zeinhom M. [5 ]
机构
[1] Univ Malaysia Sabah, Fac Sci & Nat Resources, Environm Sci Programme, Kota Kinabalu 88400, Sabah, Malaysia
[2] Univ Malaysia Sabah, Fac Sci & Nat Resources, Water Res Unit, Kota Kinabalu 88400, Sabah, Malaysia
[3] Zhejiang Ocean Univ, Marine Sci & Technol Coll, Zhoushan 316022, Zhejiang, Peoples R China
[4] Taif Univ, Turabah Univ Coll, Dept Chem, Taif 21944, Taif 11099, Saudi Arabia
[5] Al Azhar Univ, Fac Sci, Dept Chem, Nasr City 11884, Cairo, Egypt
关键词
Faradic capacitive deionization; Capacitive deionization; FeOOH; Carbon nanotube; SEAWATER DESALINATION; POROUS-ELECTRODES; PERFORMANCE; INTERCALATION; COMPOSITE; GRAPHENE; REMOVAL; FUTURE; ENERGY; MXENE;
D O I
10.1016/j.pnsc.2024.06.004
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Faradic-based capacitive deionization (FDI) has been widely acknowledged as one of the most promising desalination techniques to solve the freshwater crisis, yet was largely limited by heavily trailed development of its anode materials, which subsequently hindered its desalination performance in terms of both desalination capacity and stability. Herein, we developed a new type of anode material for FDI by coupling chloride-insertion FeOOH with carbon nanotubes (CNTs@FeOOH). The essence of this study lay in the composition of FeOOH with CNTs that could not only facilitate charge/electron transfer but also prevent structural aggregation. Consequently, the CNTs@FeOOH-based FDI system displays excellent desalination performance (desalination capacity: 50.36 mg g-1;-1 ; desalination rate: 0.41 mg g-1 s-1)-1 ) with robust long-term stability (13.86% reduction over 80 cycles), which could motivate the future development of other highly-efficient desalination systems.
引用
收藏
页码:731 / 738
页数:8
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