Research Article4210.1016/j.apcatb.2023.123475Unveiling enhanced dark photocatalysis: Electron storage-enabled hydrogen production in polymeric carbon nitrideNov 07, 2023Applied Catalysis B: EnvironmentalLaiyu Luo + 6 more +6CiteListenSave
Research Article3610.1016/j.apcatb.2023.123473Oxygen-driven bulk defect engineering in carbon to reduce voltage hysteresis for fast potassium storage at low voltageNov 07, 2023Applied Catalysis B: EnvironmentalZongfu Sun + 9 more +9CiteListenSave
Research Article6710.1016/j.apcatb.2023.123489Insights into enhancement of NH3-SCR activity and N2 selectivity of LDHs-derived NiMnAlOx catalysts: Combination of experiments and DFT calculationsNov 07, 2023Applied Catalysis B: EnvironmentalQinghua Yan + 8 more +8CiteListenSave
Research Article2510.1016/j.apcatb.2023.123486Synergistic d-p hybridized Co/W5N4 heterostructure catalyst for industrial alkaline water/seawater hydrogen evolutionNov 07, 2023Applied Catalysis B: EnvironmentalShipeng Geng + 8 more +8CiteListenSave
Research Article4810.1016/j.apcatb.2023.123467Polymethylhydrosiloxane-modified gas-diffusion cathode for more efficient and durable H2O2 electrosynthesis in the context of water treatmentNov 04, 2023Applied Catalysis B: EnvironmentalPan Xia + 6 more +6CiteListenSave
Research Article2710.1016/j.apcatb.2023.123466Spin state-tailored tetrahedral and octahedral cobalt centers on millimetric Co-Al oxide catalysts as dual sites for synergistic peroxymonosulfate activationNov 04, 2023Applied Catalysis B: EnvironmentalJia-Cheng E Yang + 6 more +6CiteListenSave
Research Article4110.1016/j.apcatb.2023.123451Tailoring the Mo-N/Mo-O configuration in MoO2/Mo2N heterostructure for ampere-level current density hydrogen productionNov 02, 2023Applied Catalysis B: EnvironmentalShuai Feng + 8 more +8Mo-based electrocatalysts have garnered significant attention for their promising hydrogen evolution reaction (HER) efficiency, however, the strong adsorption of hydrogen poses a challenge to speedy gaseous hydrogen release. In this respect, regulating the coordination of Mo atoms is an efficient strategy to optimize the electronic configuration and accelerate the HER kinetics. Herein, MoO2/Mo2N heterostructures are prepared by a programmed in situ nitridation process. The precisely controlled Mo-N/Mo-O configuration in MoO2/Mo2N heterostructure weakens hydrogen adsorption on the Mo sites leading to HER with an ampere-level current density. The electrocatalyst delivers 1 A cm−2 at an overpotential of 335 mV in 0.5 M H2SO4. Furthermore, the electrocatalyst has excellent stability by maintaining a current density of 1 A cm−2 for 180 hours with a remarkable Faradaic efficiency of 99.8%. The results reveal a novel strategy to precisely modulate the electronic configurations of low-cost transition metal-based electrocatalysts boding well for industrial-scale hydrogen production.Read moreCiteListenSave
Research Article4410.1016/j.apcatb.2023.123441A facile MnSO4 surface coated NiMnFeOx catalyst with enhanced SO2 resistance for SCR reaction: A dual-protection mechanismOct 28, 2023Applied Catalysis B: EnvironmentalShuhao Li + 7 more +7CiteListenSave
Research Article5810.1016/j.apcatb.2023.123430Design of bimetallic catalyst with dual-functional Cu-Ce sites for synergistic NOX and toluene abatementOct 24, 2023Applied Catalysis B: EnvironmentalZiyang Guo + 6 more +6CiteListenSave
Research Article8210.1016/j.apcatb.2023.123422Plasma-catalytic CO2 hydrogenation to methanol over CuO-MgO/Beta catalyst with high selectivityOct 21, 2023Applied Catalysis B: EnvironmentalQian Chen + 7 more +7CiteListenSave