2D Ti3C2Tx MXene nanosheets coated cellulose fibers based 3D nanostructures for efficient water desalination

被引:100
|
作者
Anwer, Shoaib [1 ]
Anjum, D. H. [2 ]
Luo, Shaohong [3 ]
Abbas, Yawar [2 ]
Li, Baosong [1 ]
Iqbal, Shahid [4 ]
Liao, Kin [1 ,5 ]
机构
[1] Khalifa Univ, Dept Aerosp Engn, Abu Dhabi 127788, U Arab Emirates
[2] Khalifa Univ, Dept Phys, Abu Dhabi 127788, U Arab Emirates
[3] Khalifa Univ, Dept Biomed Engn, Abu Dhabi 127788, U Arab Emirates
[4] Huizhou Univ, Sch Chem & Mat Engn, Huizhou 516007, Guangdong, Peoples R China
[5] Khalifa Univ, Dept Mech Engn, Abu Dhabi 127788, U Arab Emirates
关键词
MXene Ti3C2Tix; Cellulose fiber; Capacitive deionization; Water desalination; 2D nanosheets; CAPACITIVE DEIONIZATION CDI; SEAWATER DESALINATION; ENERGY-CONSUMPTION; FARADAIC REACTIONS; BRACKISH-WATER; CARBON; MEMBRANE; PERFORMANCE; FUTURE; TECHNOLOGY;
D O I
10.1016/j.cej.2020.126827
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
We introduce a novel and facile synthesis strategy to design 2D MXene (Ti3C2Tx) nanosheets (NSs) coated cellulose fibers (CLF) based 3D nanostructures (CLF@Ti3C2Tx) to overcome the drawbacks of co-ion expulsion in carbon-based, commonly used CDI electrodes and restacking of MXene NSs due to van der Waals forces in the pure MXene based electrodes. CLF extracted from facial tissue paper were used as a porous carbon core-substrate to coat shell of exfoliated two-dimensional (2D) Ti(3)C(2)T(x )NSs in order to prepare unique CLF@Ti(3)C(2)T(x )nanos-tructures composite by an improved dip-coating method. After appropriate structural and chemical character-ization, the designed CLF@Ti(3)C(2)T(x )material was assembled in symmetric capacitive deionization (CDI) cell as an active electrode and the electrochemical properties and desalination capacity were studied in detail. Interestingly, the CLF@Ti(3)C(2)T(x )based active electrodes displayed good specific capacitance of 142 F.g(-1) in 1 M sodium chloride electrolyte, and high salt adsorption capacitance of 35 mg.g(-1) compared with the pure MXene and carbon-based electrodes at an applied voltage of 1.2 V, with considerable cycling stability of 10 cycles. Inspired by the conventional chemical gilding process, the proposed unique and low-cost synthesis strategy and unique design open a new way to develop MXene-carbon based composite nanostructures for CDI and energy storage applications.
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页数:11
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