In Situ Derived Mixed Ion/Electron Conducting Layer on Top of a

In Situ Derived Mixed Ion/Electron Conducting Layer on Top of a

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Cascade-heterogated biphasic gel iontronics for electronic-to-multi-ionic signal transmission

Mapping the pathways of photo-induced ion migration in organic-inorganic hybrid halide perovskites

Roadmap for Sustainable Mixed Ionic‐Electronic Conducting Membranes - Chen - 2022 - Advanced Functional Materials - Wiley Online Library

Cross-Linking of Sugar-Derived Polyethers and Boronic Acids for Renewable, Self-Healing, and Single-Ion Conducting Organogel Polymer Electrolytes

Nanomaterials, Free Full-Text

Alveolate porous carbon aerogels supported Co9S8 derived from a novel hybrid hydrogel for bifunctional oxygen electrocatalysis - ScienceDirect

The relationship between ionic-electronic coupling and transport in organic mixed conductors

Porous Mixed Ionic Electronic Conductor Interlayers for Solid-State Batteries

Frontiers Mixed Conductivity of Hybrid Halide Perovskites: Emerging Opportunities and Challenges

Operando Characterization of Organic Mixed Ionic/Electronic Conducting Materials

Role of conducting polymers in enhancing the stability and performance of perovskite solar cells: a brief review - ScienceDirect

Understanding metal propagation in solid electrolytes due to mixed ionic-electronic conduction - ScienceDirect

Fullerene Derivative-Modified SnO2 Electron Transport Layer for Highly Efficient Perovskite Solar Cells with Efficiency over 21%

Enhancing the Faradaic efficiency of solid oxide electrolysis cells: progress and perspective

Li migration, nucleation and growth behavior regulated by a lithiophilic cobalt phosphide-doped carbon nanofibers derived ion/electron conductive framework - ScienceDirect