Interfacial water modulation on single-Ru-atoms-embedded (Cu0.5Ni0.5)6Sn5 intermetallic surfaces for efficient nitrate-to-ammonia electrosynthesisPaperMing Peng·+11 more13d agoAmmonia Synthesis and Nitrogen Reduction
Electrochemically selective ammonium generation and in-situ storage from inorganic nitrogen wastewater via coupling interface redox and hydrogen bondingPaperJia Tang·+8 more14d agoAmmonia Synthesis and Nitrogen Reduction
Polyoxometalate cluster-metal oxide hybrid subnanobelts on Hf-O-Mo interfacial electron coupling for piezocatalytic reduction of dilute CO2PaperYaning Gong·+8 more14d agoAdvanced Photocatalysis Techniques
Crystalline/amorphous heterostructure-engineered NiFe2O4 as an electrocatalyst for highly nitrate electroreduction to ammonia in neutral mediaPaperBoran Yang·+8 more14d agoAmmonia Synthesis and Nitrogen Reduction
Deciphering the mechanistic pathway for CO2 electroreduction to dimethoxymethanePaperJingui Ma·+8 more15d agoCO2 Reduction Techniques and Catalysts
Spatial–thermal decoupling with electrochemical CO pumping for intensified CO2 methanationPaperYanling Feng·+9 more16d agoCatalysts for Methane Reforming
Stabilizing copper oxidation states via lattice oxygen overflow on Sb2O4 for durable CO2 electroreduction to COPaperLinfeng Fan·+7 more16d agoCO2 Reduction Techniques and Catalysts
In-liquid femtosecond laser-engineered dual-type cation and anion vacancies boost photocatalysisPaperRui Wang·+11 more16d agoLaser-Ablation Synthesis of Nanoparticles
Tailoring asymmetric electron distribution in covalent organic frameworks to regulate electron- and energy-transfer processes for efficient hydrogen peroxide photosynthesisPaperPengfei Li·+6 more16d agoCovalent Organic Framework Applications
Electron transfer mediated by asymmetrically coordinated Fe single-atom catalysts for superior peracetic acid activationPaperWenzhe Zhu·+4 more17d agoAdvanced oxidation water treatment
Synergistic electron-proton transport in an interpenetrated 3D COF for efficient H2O2 photosynthesisPaperYujie Ling·+6 more17d agoElectrocatalysts for Energy Conversion
Tuning intermediate adsorption via synergistic phase and doping engineering: Activating transition metal tellurides for high-performance electrocatalytic sulfion oxidationPaperNG Wai Kwong·+6 more17d agoElectrocatalysts for Energy Conversion
Sulfonic acid group engineering enables molecular-level regulation of synergistic electron transfer and dual-oxygen pathways for highly selective H2O2 photosynthesisPaperXiaodan Liu·+7 more17d agoMetalloenzymes and iron-sulfur proteins
Electronegativity-driven electron modulation of Pt active sites in bimetallic heterostructured catalysts for enhanced liquid organic hydrogen carriers dehydrogenationPaperXiang Gong·+7 more18d agoElectrocatalysts for Energy Conversion
Suppressing Ir oxidation by support with high electron density enables ultra-efficient water oxidationPaperHaoran Jiang·+7 more22d agoElectrocatalysts for Energy Conversion
Synergistic Zn, O dual-vacancy and cobalt-nanoparticle engineering on ZnO for efficient photocatalytic CO2 reductionPaperMengyuan Zhu·+8 more22d agoAdvanced Photocatalysis Techniques
Achieving simultaneous enhancement of activity and stability in acidic oxygen evolution through Yb and La Co-doping-induced reaction pathway switch on RuO2 catalystsPaperGuidong Xu·+7 more3/28/2026Electrocatalysts for Energy ConversionEnergyPhysical SciencesRenewable Energy, Sustainability and the Environment
Photothermal toluene oxidation enabled by amorphous-crystalline interfaces with operando-resolved dynamic redox bufferingPaperShichang Wang·+6 more3/27/2026EnergyPhysical SciencesRenewable Energy, Sustainability and the EnvironmentTiO2 Photocatalysis and Solar Cells
Ionization polarization engineering of the linking C N bonds in imine-linked covalent organic frameworks for synergistic adsorption and photoreduction of goldPaperMeng Li·+5 more3/27/2026Covalent Organic Framework ApplicationsMaterials ChemistryMaterials SciencePhysical Sciences
Interfacial electric fields and electronic modulations synergistically enhance lattice oxygen mechanism for efficient oxygen evolution reactionPaperXiaocheng Xu·+5 more3/26/2026Electrocatalysts for Energy ConversionEnergyPhysical SciencesRenewable Energy, Sustainability and the Environment