the final support of ARC DP220103045;the startup support of KFUPM;Prince Sultan University for their support。
Transition metal carbides,known as MXenes,particularly Ti_(3)C_(2)T_(x),have been extensively explored as promising materials for electrochemical reactions.However,transition metal carbonitride MXenes with high nitrog...
supported by the National Natural Science Foundation of China(No.52272199).
Using density functional theory calculations,we investigate the growth habit and structural stability of Ni_(4) tetramer on TiO_(2)(Ni_(4)/TiO_(2)),which acts as a representative of oxide-supported few-atom catalysts(...
supported by the National Natural Science Foundation of China(No.22201262).
By incorporating a limited number of precious metal atoms into the base metal,the single-atom alloy catalyst not only optimizes the electronic structure and stability of the catalyst but also emerges as an innovative ...
supported by the National Natural Science Foundation of China(Nos.52172096 and 22375131).
Photoelectrochemical(PEC)water splitting has great potential for solar energy conversion to hydrogen.However,the slow charge transfer in the photoanodes remains a core issue limiting the PEC performance.In this study,...
supported by the Excellent Research and Innovation Team Project of Anhui Province(2022AH010001)。
Electrochemical synthesis of ammonia represents a green and environmental-ly friendly method distinct from tradi-tional Harper-Bosch processes,which demand stringent conditions.However,identifying a catalyst with high...
supported by the Foundation for Distinguished Young Scholars of medical science and technology innovation in Henan Province(No.YXKC2022033);Fund for Scientific Research and Innovation Team of The First Affiliated Hospital of Zhengzhou University(No.QNCXTD2023018);Scientific Research Projects of colleges and universities in Henan Province(No.24A320055).
Reasonable design and construction of artificial enzymes with excellent catalytic activity,good stability and superior biocompatibility is essential for tumor therapy.Single-atom site catalysts(SAs)with well-defined a...
supported by the National Key Research and Development Program of China(No.2023YFB4006203);the National Natural Science Foundation of China(Nos.U21A20328,22209202);the Strategic Priority Research Program B of Chinese Academy of Sciences(No.XDB33030200);the Project Funded by China Postdoctoral Science Foundation(No.2021M703457).
Single-atom catalysts(SACs)have shown great potential in catalysis and energy-related applications.Among these,iron SACs stand out for their exceptional performance and environmental friendliness.In this study,we inve...
supported by the National Natural Science Foundation of China(No.22176046);the Science Fund for Creative Research Groups of the National Natural Science Foundation of China(No.52321005);the Shenzhen Science and Technology Program(Nos.KQTD20190929172630447,JCYJ20210324124209025,and GXWD20220811173949005);the Natural Science Foundation of Guangdong Province(No.2022A1515012016).
The global production of organic wastes and heavy metals(HMs)poses significant environmental risks,along with considerable carbon emissions from waste decomposition.This highlights the significance of synergistic mana...
financially supported by National MCF Energy Research and Development Program(No.2022YFE03170004);the National Natural Science Foundation of China(Nos.22019146,and 22309169);Emei Tianfu Leading Talent Program in Sichuan Province(No.RCQC202201);Sichuan Province Natural Science Foundation Innovation Research Team Program(No.2024NSFTD0018);Foundation from Institute of Materials CAEP(No.JBNY060201).
Dual-atom catalysts(DACs)are emerging as highly efficient electrocatalysts,offering synergistic effects and high atomic utilization.Here,we introduce a scalable and facile electrochemical approach for the top-down syn...