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Interlayer Structure Manipulation of FeOCl/MXene with Soft/Hard Interface Design for Safe Water Production Using Dechlorination Battery Deionization

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Specialty Chemistry
Date 2024 May 4
PMID 38703075
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Abstract

Suffering from the susceptibility to decomposition, the potential electrochemical application of FeOCl has greatly been hindered. The rational design of the soft-hard material interface can effectively address the challenge of stress concentration and thus decomposition that may occur in the electrodes during charging and discharging. Herein, interlayer structure manipulation of FeOCl/MXene using soft-hard interface design method were conducted for electrochemical dechlorination. FeOCl was encapsulated in TiCT MXene nanosheets by electrostatic self-assembly layer by layer to form a soft-hard mechanical hierarchical structure, in which TiCT was used as flexible buffer layers to relieve the huge volume change of FeOCl during Cl intercalation/deintercalation and constructed a conductive network for fast charge transfer. The CDI dechlorination system of FeOCl/TiCT delivered outstanding Cl adsorption capacity (158.47 ± 6.98 mg g), rate (6.07 ± 0.35 mg g min), and stability (over 94.49 % in 30 cycles), and achieved considerable energy recovery (21.14 ± 0.25 %). The superior dechlorination performance was proved to originate from the Fe/Fe topochemical transformation and the deformation constraint effect of TiCT on FeOCl. Our interfacial design strategy enables a hard-to-soft integration capacity, which can serve as a universal technology for solving the traditional problem of electrode volume expansion.

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Wedge-Like Microstructure of AlO/i-TiCT Electrode with "Nano-Pumping" Effect for Boosting Ion Diffusion and Electrochemical Defluoridation.

Wang J, Chen J, Liu N, Lei J, Gao H, Yu F Adv Sci (Weinh). 2024; 12(3):e2411659.

PMID: 39575459 PMC: 11744565. DOI: 10.1002/advs.202411659.