A research team led by Prof. ZHANG Suojiang from IPE of the Chinese Academy of Sciences prepared a manganese (Mn) single-atom catalyst (SAC) with Mn-N3 site supported by graphitic C3N4, which exhibited efficient performance of CO2 electroreduction.
Alloying with cheap transition metals is an effective way to reduce the dosage of relatively expensive metals, e.g. Pt and Pd. Usually, the nanoalloys composed of miscible metals could be synthesized and tailored by wet-chemistry methods.
Alloying with cheap transition metals is an effective way to reduce the dosage of relatively expensive metals, e.g. Pt and Pd. Usually, the nanoalloys composed of miscible metals could be synthesized and tailored by wet-chemistry methods.
Researchers from the Institute of Process Engineering (IPE) of the Chinese Academy of Sciences and Argonne National Laboratory (Argonne) in the U.S. have recently employed atomic layer deposition (ALD) to fabricate visible light-activated membran...
Researchers from IPE of the Chinese Academy of Sciences and Argonne National Laboratory (Argonne) in the U.S. have recently employed atomic layer deposition (ALD) to fabricate visible light-activated membranes that efficiently utilize solar energy.
Developing safe and efficient bioformulations using approved materials and ingenious designs can accelerate the clinical translation process. Scientists from the Institute of Process Engineering (IPE) of the Chinese Academy of Sciences have devel...
A research team led by Prof. CHEN Yunfa from IPE of the Chinese Academy of Sciences demonstrated the electron generation, compensation and transfer between ZnO and O3 through tuning crystal defects in ZnO.
Atmospheric ozone (O3) has become one of the major air pollutants. Catalytic decomposition is one efficient and economical technology in O3 removal, where metal oxides can serve as cost-effective catalysts substituting for noble metals. A researc...
A research team led by Prof. CHEN Yunfa from IPE of the Chinese Academy of Sciences demonstrated the electron generation, compensation and transfer between ZnO and O3 through tuning crystal defects in ZnO.