supported by the National Natural Science Foundation of China(Nos.22279111,51971195,and 11935004);the Natural Science Foundation of Hebei Province(No.B2020203037);Subsidy for Hebei Key Laboratory of Applied Chemistry after Operation Performance(No.22567616H).
MgH_(2),albeit with slow desorption kinetics,has been extensively studied as one of the most ideal solid hydrogen storage materials.Adding such catalyst as Ni can improve the desorption kinetics of MgH_(2),whereas the...
Fundamental Research Funds for Central Universities(No.2022CDJKYJH028);National Natural Science Foundation of China(No.52271091);Chongqing Special Key Project of Technology Innovation and Application Development,China(No.cstc2019jscx-dxwtBX0016).
Mg-Li alloy is a lightweight hydrogen storage material with high hydrogen capacity,but its poor kinetics limited its practical applications.In this work,MCM-22 molecular sieve was added to Mg-Li alloy by friction stir...
supported by the Natural Science Foundation of Inner Mongolia,China(grant nos.2022MS05011,2020LH01006,and 2022FX02);the National Natural Science Foundation of China(grant nos.52261041 and 51961032);the Major Science and Technology Project of Inner Mongolia(grant no.2021ZD0029);the Fundamental Research Funds for Inner Mongolia University of Science&Technology(grant no.2023QNJS119).
High-entropy alloys(HEAs)are a promising solution for large-scale hydrogen storage(H-storage)and are therefore receiving increasing attention from the materials science community.In this study,we systematically invest...
supported by the Chongqing Special Key Project of Technology Innovation and Application Development,China(cstc2019jscx-dxwt B0029);the National Natural Science Foundation of China(51871143);the Science and Technology Committee of Shanghai(19010500400);the Shanghai Rising-Star Program(21QA1403200);Chongqing Research Program of Basic Research and Frontier Technology(No.cstc2019jcyj-msxm X0306);the Start-up Funds of Chongqing University(02110011044171);the Senior Talent Start-up Funds of Jiangsu University(4111310024);the Independent Research Project of State Key Laboratory of Mechanical Transmissions(SKLMT-ZZKT-2021M11)
Mg-based materials are one of the most promising hydrogen storage candidates due to their high hydrogen storage capacity,environmental benignity,and high Clarke number characteristics.However,the limited thermodynamic...
National Natural Science Foundation of China(11705266,51971126);the“111”project(D16002).
ZrxV5Fe(x=3,5,7,8,9)alloys were designed to investigate the influence of Zr addition on hydrogenation performance.The alloys were prepared by arc melting and then annealed at 1273K for 168 h.The results showed that th...
H.Shao acknowledges the Macao Science and Technol-ogy Development Fund(FDCT)for funding(project no.118/2016/A3 and 0062/2018/A2);and this work was also par-tially supported by a Start-Up Research Fund from the Uni-versity of Macao(SRG2016-00088-FST);Q.Li also thanks the financial support from the National Natural Science Foun-dation of China(51671118);Young Elite Scientists Sponsor-ship Program by CAST(2017QNRC001);the“Chenguang”Program from the Shanghai Municipal Education Commission(17CG42);Science and Technology Committee of Shanghai(16520721800);the Program for Professor of Special Ap-pointment(Eastern Scholar)by Shanghai Municipal Educa-tion Commission(No.TP2015040).;。
Mg-based materials have been intensively studied for hydrogen storage applications due to their high energy density up to 2600 Wh/kg or 3700 Wh/L.However,the Mg-based materials with poor kinetics and the necessity for...
Project (2016J01266) supported by the Natural Science Foundation of Fujian Province,China;Project (JZ160474) supported by the Science and Technology Project of Education Department of Fujian Province,China
Mg2Ni0.7M0.3(M=Al,Mn and Ti)alloys were prepared by solid phase sintering process.The phases and microstructure of the alloys were systematically characterized by XRD,SEM and STEM.It was found that Mg3MNi2intermetalli...
supported by the National Natural Science Foundation of China(NSFC,Grant nos.51571112,51771092,51471087);the Natural Science Foundation of Jiangsu Province(BK20151405,BK20161004);the Priority Academic Program Development(PAPD)of Jiangsu Higher Education Institutions
In this work, polyvinylpyrrolidone(PVP) coated Mg_(95)Ni_5 nano-composites were prepared by hydriding combustion synthesis(HCS) plus wet mechanical milling(WM) with tetrahydrofuran(THF) and donated as WM-x wt% PVP(x =...
Acknowledgements This work was financially supported in part by the National Natural Science Foundation of China (Nos. 21471141, U1532135, and 21603191), CAS Key Research Program of Frontier Sciences (No. QYZDB- SSW-SLH018), Zhejiang Provincial Natural Science Foundation (No. LQ16B010001), Recruitment Program of Global Experts, and CAS Hundred Talent Program XAFS measurements were performed at the beamline BL14W1 in the Shanghai Synchrotron Radiation Facility (SSRF), China.
Photocatalytic reduction of CO2 into high value-added CH4 is a promising solution for energy and environmental crises. Integrating semiconductors with cocatalysts can improve the activities for photocatalytic CO2 redu...
the Czech Science Foundation (project No. P108/12/G043) for the financial support of this research
The MgNi26 alloy was prepared by three different methods of gravity casting (GC), mechanical alloying (MA) and rapid solidification (RS). All samples were electrochemically hydrided in a 6 mol/L KOH solution at 80 °C...