Green Energy & Environment
Research highlight
Review articles
Research papers
- Improved methanol synthesis performance of Cu/ZnO/Al2O3 catalyst by controlling its precursor structure
- A reaction density functional theory study of solvent effect in the nucleophilic addition reactions in aqueous solution
- Enhanced CO2 electroreduction to ethylene via strong metal-support interaction
- Hierarchical and self-supporting honeycomb LaNi5 alloy on nickel foam for overall water splitting in alkaline media
- The feasibility study of the indium oxide supported silver catalyst for selective hydrogenation of CO2 to methanol
- One-pot green mass production of hierarchically porous carbon via a recyclable salt-templating strategy
- Ni2P/MoS2 interfacial structures loading on N-doped carbon matrix for highly efficient hydrogen evolution
- Increasing the greenness of an organic acid through deep eutectic solvation and further polymerisation
- Surface-mediated iron on porous cobalt oxide with high energy state for efficient water oxidation electrocatalysis
- Oxygen-deficient SnO2 nanoparticles with ultrathin carbon shell for efficient electrocatalytic N2 reduction
- Design and in-situ construct BiOI/Bi/TiO2 photocatalysts with metal-mediated heterostructures employing oxygen vacancies in TiO2 nanosheets
- Vicinal hydroxyl group-inspired selective oxidation of glycerol to glyceric acid on hydroxyapatite supported Pd catalyst
- High performance of TiO2/CuxO photoelectrodes for regenerative solar energy storage in a vanadium photoelectrochemical cell
- Visible light-driven oxidant-free dehydrogenation of alcohols in water using porous ultrathin g-C3N4 nanosheets
- High mass loading NiCo2O4 with shell-nanosheet/core-nanocage hierarchical structure for high-rate solid-state hybrid supercapacitors
- Engineering electronic structures of titanium vacancies in Ti1-xO2 nanosheets enables enhanced Li-ion and Na-ion storage
- The regulating effect of doping Cu on the catalytic performance of CO oxidative coupling to DMO on PdxCuy/GDY: A DFT study
- Sulfur vacancies-doped Sb2S3 nanorods as high-efficient electrocatalysts for dinitrogen fixation under ambient conditions
- Enhanced electrode kinetics and properties via anionic regulation inpolyanionic Na3+xV2(PO4)3-x(P2O7)x cathode material