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A robust inorganic binder against corrosion and peel-off stress in electrocatalysis

Joey Andrew A. Valinton, Meng-Yu Lin, Cheng-Han Tsai, C.H. Tsai, M. Chiu, Cheng‐chau Chiu, Chun‐Hu Chen

2024Chemical Science23 citationsDOIOpen Access PDF

Abstract

and higher electrochemical surface areas compared to systems using Nafion. This is partially due to the presence of metal sites in different oxidation states which has been shown to increase intrinsic conductivity, facilitating the charge hopping at the binder/electrocatalyst interface. With this, the present work provides a proof-of-concept for inorganic metal oxides as promising solid-state binders for a wide range of applications in electrochemistry, demonstrating CMOH's outstanding characteristic of strong adhesion to support other highly active but adhesion-weak electrocatalysts.

Topics & Concepts

ElectrocatalystCorrosionStress (linguistics)Materials scienceNanotechnologyComposite materialChemistryElectrochemistryElectrodePhilosophyPhysical chemistryLinguisticsElectrocatalysts for Energy ConversionFuel Cells and Related MaterialsAdvanced battery technologies research