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August 14, 2026ChemSusChem

Cover Feature: Capacitive Deionization for Brackish Water Purification Using Asymmetric Charge‐Immobilized Activated Carbon With Safe Hydrophilic Binders (ChemSusChem 16/2026)

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Authors

MHMd Zawad HossainKansas State UniversityASArchana SekarBiogen (United States)SRSabari RajendranKansas State University

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Implication

Experimental study demonstrates enhanced charge efficiency and stability during brackish water purification, indicating potential for low-cost asymmetric capacitive deionization.

Key Points

  • To develop a low-cost asymmetric capacitive deionization system for brackish water purification using activated carbon electrodes modified with charged surfactants and safe hydrophilic binders.
  • Fabricated asymmetric capacitive deionization electrodes by immobilizing positively and negatively charged surfactants onto activated carbon matrices.
  • Integrated safe hydrophilic binders to maintain structural integrity and evaluated device performance in brackish water desalination.
  • The asymmetric immobilization of oppositely charged surfactants successfully established selective ion-adsorption interfaces on activated carbon electrodes.
  • The modified electrode system improved overall charge efficiency and operational stability during brackish water purification.

Cite This Study

Hossain et al. (2026) studied this question.

synapsesocial.com/papers/6a7ec735b70b84ec8b913503https://doi.org/10.1002/cssc.71007
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Also Consider

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  1. 1Capacitive Deionization for Brackish Water Purification Using Asymmetric Charge‐Immobilized Activated Carbon With Safe Hydrophilic Binders2026
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