the financial support from the Foshan Talents Special Foundation(BKBS202003).
Unstable Zn interface caused by rampant dendrite growth and parasitic side reactions always hinders the practical application of aqueous zinc metal batteries(AZMBs),Herein,tyrosine(Tyr)with high molecular polarity was...
National Natural Science Foundation of China (52371228, 52402045);fund of Key Laboratory of Advanced Materials of Ministry of Education(Advmat-2414)。
Electrocatalytic nitrate reduction reaction (NO_(3)-RR) to ammonia under ambient conditions is expected to be a green process for ammonia synthesis and alleviate water pollution issues.We report a CuO nanoparticles in...
National Natural Science Foundation of China(22379083);State Key Laboratory of Chemical Engineering(SKL-ChE-23T02);financial support from Beijing National Laboratory for Molecular Sciences;support from Tsinghua International School’s Research Mentoring Program;support from Tsinglan School’s Research Mentoring Program。
Renewable energy-driven bicarbonate conversion to valuable chemicals presents an attractive strategy for mitigating CO_(2)emissions,as bicarbonate can be efficiently generated from the capture of atmospheric CO_(2)usi...
supported by the National Science Foundation of Sichuan Province(2023NSFSC1124);Fundamental Research Funds for the Central Universities(YJ2021141);the Science and Technology Cooperation Special Fund of Sichuan University and Zigong City(2022CDZG-9).
High-voltage battery systems bring significant increases in energy density but are also accompanied by fast degradation of electrochemical performance and serious safety issues.Herein,Li^(+)coordination structure regu...
supported by the Korea Institute of Energy Technology Evaluation and Planning(KETEP)grant from the Ministry of Trade,Industry&Energy,Republic of Korea(No.20213030040590);the National R&D Program through the National Research Foundation of Korea(NRF)funded by the Ministry of Science and ICT(NRF-2021K1A4A8A01079455)。
Continuous efforts are underway to reduce carbon emissions worldwide in response to global climate change.Water electrolysis technology,in conjunction with renewable energy,is considered the most feasible hydrogen pro...
Complex oxides are an important class of materials with enormous potential for electrochemical appli-cations.Depending on their composition and structure,such complex oxides can exhibit either a single conductivity(ox...
the financial support from the National Natural Science Foundation of China(22072170);the Zhejiang Provincial Key Research and Development Program(2021C03170);the Ningbo Science and Technology Bureau(2019B10096)。
Biomass,derived from plant photosynthesis that captures carbon dioxide to form carbohydrates,offers vast renewable reserves.The electrooxidation of biomass,coupled with the hydrogen evolution reaction,enables the simu...
supported by the National Key Research and Development Program of China(2022YFB4002100);the Key Program of the National Natural Science Foundation of China(22090032,22090030)。
Direct seawater electrolysis for hydrogen production has been regarded as a viable route to utilize surplus renewable energy and address the climate crisis.However,the harsh electrochemical environment of seawater,par...
financial support from the National Key R&D Program of China (Nos. 2022YFA1504500, 2022YFA1503100);the National Natural Science Foundation of China (Nos. 21988101, 21890753, 22225204, 92145301, 22002160 and 22272174);the Strategic Priority Research Program of the Chinese Academy of Sciences (No. XDB36030200);the CAS Project for Young Scientists in Basic Research (No. YSBR-028);the Fundamental Research Funds for the Central Universities (No. 20720220008);the Dalian National Lab for Clean Energy (DNL Cooperation Fund 202001);the Innovation Research Fund Project of DICP (No. DICP I202016)。
Electrochemical CO reduction reaction(CORR) provides a promising approach for producing valuable multicarbon products(C_(2+)), while the low solubility of CO in aqueous solution and high energy barrier of C–C couplin...
the financial support from the Brazilian funding agencies CNPq(310544/2019-0);FAPESP(2014/02163-7,2017/11958-1&2016/08645-9);FAPEMIG(Financial support for the LMMA/UFVJM Laboratory);CNPq(PQ-2 grant:Process 301095/2018-3);the support from Shell。
We discuss here essential aspects of the experimental supercapacitors characterization by a series of well-known electrochemical methods.We are motivated by a considerable number of publications that misreport procedu...