Junying Tang
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Low-coordinated CuNi dual-atom catalyst for efficient flue gas CO 2 -to-C 2 H 6 photoreduction
Abstract Efficient photoreduction of flue gas CO2 to high-value C2 products is challenging due to low CO2 concentrations, sluggish kinetics, and susceptibility to catalyst poisoning. To tackle this, CuNi/PCN photocatalysts with low-coordinated N3-Ni-Cu-N2 dual-atom active sites were synthesized by in-situ thermal polymerization method. The optimized catalyst drives CO2 photoreduction, with C2H6 formed as the major product at a rate of 254.3 μmol h−1 g−1 alongside CO and CH4.
Exploring Oxygen Defects in TiO2-x for Enhanced Photocatalytic CO2 Reduction: A Comprehensive Undergraduate Chemistry Experiment
Ayuda Buscar en la ayuda Buscar en la ayuda Exploring Oxygen Defects in TiO2–x for Enhanced Photocatalytic CO2 Reduction: A Comprehensive Undergraduate Chemistry Experiment Junying Tang [1] ; Ruitang Guo [2] ; Juan Wang [2] ; Jiahua Lao [1] ; Qinyue Zhang [1] ; Jingfei Lan [1] [1] University of Shanghai for Science and Technology, China [2] Shanghai University of Electric Power, P. R. China Localización: Journal of chemical education, ISSN 0021-9584, Vol. 102, Nº 6, 2025, págs.
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