Material Science Breakthrough
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Boron nitride nanotubes demonstrate anomalous ultrafast lithium-ion transport, indicating a significant material science advancement for energy storage and osmotic energy generation. Concurrently, challenges in alkaline hydrogen oxidation reaction kinetics highlight the ongoing need for advanced Pt-based catalyst design focusing on interfacial microenvironment engineering.
Correlated Linguistic Patterns
["ultrafast lithium-ion transport"
"boron nitride nanotube membranes"
"blue osmotic energy"
"hydrogen oxidation reaction"
"Pt-based catalysts"
"anion exchange membrane fuel cells"
"interfacial microenvironment engineering"]
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Anomalous ultrafast lithium-ion transport through boron nitride nanotube membranes
Aqueous cation transport in boron nitride nanotubes (BNNTs) is found to be generally enhanced under both concentration gradients and electric fields. BNNTs a...
Evolution of Alkaline Hydrogen Oxidation Reaction Mechanisms and Design of Pt-Based Catalysts from Adsorption Descriptors to Interfacial Microenvironment Engineering
Chem. Commun., 2026, Accepted ManuscriptDOI: 10.1039/D6CC02419J, Review ArticleHong-Fei Xing, Wei-Dong Li, Hao-Ran Wu, Mei-Li Wang, Yi-Wen Liu, Bo Song, Bang...
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