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LiXin Chen
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LiXin Chen.Construction of heterogeneous interfaces for water activation and dissociation to synergistically boost overall water splitting.ournal of Colloid and Interface Science,2024(665):518-525
LiXin Chen.Continuous synthesis of high-entropy alloy nanoparticles by in-flight alloying of elemental metals.Nature Communications,2024,15(1):1450
LiXin Chen.Unusual Sabatier principle on high entropy alloy catalysts for hydrogen evolution reactions.Nature Communications,2024,15(1):359
LiXin Chen.Structural Self-Regulation-Promoted NO Electroreduction on Single Atoms.Journal of the American Chemical Society,2023,145(48):26249-26256
Unleashing the charge compensation effect for enhanced electrochemical water-splitting using low-valent magnesium-inserted CoP.International Journal of Hydrogen Energy,2023,48(91):35443-35452
Intrinsic and external active sites of single-atom catalysts.Iscience,2023,26(7)
LiXin Chen.Work function-tailored nitrogenase-like Fe double-atom catalysts on transition metal dichalcogenides for nitrogen fixation.ACS Sustainable Chemistry & Engineering,2023,11(13):4990-4997
Co–Pyridinic-N Bond Constructed at the Interface of CoxP and N-Doped Carbon to Effectively Facilitate Oxygen Reduction.ACS Sustainable Chemistry & Engineering,2023,11(13):5238-5249
LiXin Chen.Machine-Learning-Driven High-Entropy Alloy Catalyst Discovery to Circumvent the Scaling Relation for CO2 Reduction Reaction.[J]ACS Catalysis,2022,12(24):14864-14871
LiXin Chen.Se-doped Li 6 PS 5 Cl and Li 5.5 PS 4.5 Cl 1.5 with improved ionic conductivity and interfacial compatibility: a high-throughput DFT study.Journal of Materials Chemistry C,2022,10(48):18294-18302
LiXin Chen.Machine learning-enabled band gap prediction of monolayer transition metal chalcogenide alloys.Physical Chemistry Chemical Physics,2022,24(7):4653-4665
LiXin Chen,High-entropy alloy catalysts: high-throughput and machine learning-driven design.J. Mater. Inform,2022,2(19):10.20517
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