Yingqiang Li
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Turing-type high-entropy oxide nanosheets for efficient seawater electrolysis
Abstract INTRODUCTION RESULTS DISCUSSION MATERIALS AND METHODS Acknowledgments Supplementary Materials REFERENCES Information & Authors Metrics & Citations View Options References Figures Tables Media Share Abstract Owing to the merit of twin boundaries, Turing-type nanostructures have received increasing attention in electrocatalysis. Integrating high-entropy design holds great promise for further improved activities due to compositional flexibility and high-entropy effects.
Angstrom-Scale Confined Ion Sieve and Accelerator for Efficient Aqueous Zinc Batteries
1 Introduction Rechargeable aqueous zinc metal batteries (AZMBs) with aqueous electrolytes have garnered significant attention as a promising alternative to lithium-ion batteries (LIBs) due to their inherent safety, economic viability, and eco-friendliness [1, 2]. However, persistent side reactions induced by water and anions, along with uncontrollable dendrite growth on the zinc anode, significantly hinder the commercialization of AZMBs [3, 4].
From waste to wealth: blueberry pomace valorization through nutrient recovery and functional ingredient development
DATA AVAILABILITY STATEMENT Data sharing not applicable to this article as no datasets were generated or analysed during the current study. REFERENCES 1, , et al., Active ingredients of blueberry pomace: a comprehensive review of isolation, identification, health benefits and food applications. Food Chem X 27:102459 (2025). 2, , , , , et al., Blueberry leaves as a promising sustainable source of polyphenols: chemical composition, functional activities and future application perspectives.
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