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Soft–hard interface design in super-elastic conductive polymer hydrogel containing Prussian blue analogues to enable highly efficient electrochemical deionization

Yifan Ren, Fei Yu, Xin‐Gui Li, Brian Yuliarto, Xingtao Xu, Yusuke Yamauchi, Jie Ma

2023Materials Horizons38 citationsDOIOpen Access PDF

Abstract

X-ray diffraction tests and finite element simulations. This study provides a simple strategy to construct three-dimensional conductive polymer hydrogel structures to improve the desalination capacity and cycling stability of faradaic materials with universality and scalability, which promotes the development of high-performance electrodes for ECDI.

Topics & Concepts

Prussian blueMaterials scienceElectrochemistrySelf-healing hydrogelsPolymerNanotechnologyConductive polymerElectrodeSoft materialsElectrical conductorChemical engineeringComposite materialPolymer chemistryChemistryPhysical chemistryEngineeringMembrane-based Ion Separation TechniquesAdvanced Battery Materials and TechnologiesAdvanced battery technologies research
Soft–hard interface design in super-elastic conductive polymer hydrogel containing Prussian blue analogues to enable highly efficient electrochemical deionization | Litcius