Efficient CO<sub>2</sub> and H<sub>2</sub>O Co-Electrolysis in a BaZr<sub>0.44</sub>Ce<sub>0.36</sub>Y<sub>0.2</sub>O<sub>3‑δ</sub>-Based Proton Ceramic Electrochemical Reactor with BaGd<sub>0.8</sub>La<sub>0.2</sub>Co<sub>2</sub>O<sub>6‑δ</sub> Steam Electrodes. [PDF]
Barrio-Querol E +7 more
europepmc +1 more source
This review evaluates strategies for electrochemical CO2 reduction to ethylene, focusing on copper‐based catalyst design and microenvironment modulation to achieve industrial‐grade performance. By leveraging operando synchrotron‐based characterizations, we provide a multiscale understanding of dynamic structural transformations and key reaction ...
Meng Zhang, Zuolong Chen, Yimin A. Wu
wiley +1 more source
Fe‐Doped Ceria‐Based Ceramic Cathode for High‐Efficiency CO2 Electrolysis in Solid Oxide Electrolysis Cell [PDF]
Lijie Zhang +6 more
openalex +1 more source
A series of Bi‐TMCs‐based heterostructures (CeNiC2/Ni‐x%) have been precisely constructed through a “molecular‐template”‐assisted strategy, which exhibits remarkable alkaline HOR performance derived from the strong synergy between Ni and CeNiC2 components.
Xi Yin +7 more
wiley +1 more source
Pulsed Dynamic Water Electrolysis: Mass Transfer Enhancement, Microenvironment Regulation, and Hydrogen Production Optimization. [PDF]
Zhang X +9 more
europepmc +1 more source
Practical operating flexibility of a bifunctional freestanding membrane for efficient anion exchange membrane water electrolysis across all current ranges [PDF]
Hyeji Son +6 more
openalex +1 more source
Effects of Molecular Designs and Double‐Network Morphologies for Bioadhesive Semiconductors
This study establishes molecular‐to‐mesoscale design rules for bioadhesive semiconducting polymers (BASCs). It identifies how side‐chain length, double‐network formation, and film thickness modulate adhesion strength and electronic performance, providing insight into the rational design of intrinsically adhesive semiconductors for stable and efficient ...
Zhichang Liu +8 more
wiley +1 more source

