financially supported by the National Natural Science Foundation of China(No.52201255);the Natural Science Foundation of Jiangsu Province(No.BK20210884);the Innovation and Entrepreneurship Program of Jiangsu Province(No.JSSCBS20211007)。
The facile construction of nanoscale NbH_(x)supported by Ti_(3)C_(2)(NbH_(x)@Ti_(3)C_(2))was achieved using facile ball milling strategy to improve the hydrogen desorption kinetics and reversibility of magnesium boroh...
the support of the National Natural Science Foundation of China(51971146,51971147,52171218 and 52271222);the Shanghai Municipal Science and Technology Commission(21010503100);the Major Program for the Scientific Research Innovation Plan of Shanghai Education Commission(2019-01-07-00-07E00015);the Shanghai Outstanding Academic Leaders Plan,the Guangxi Key Laboratory of Information Materials(Guilin University of Electronic Technology,201017-K);the Shanghai Rising-Star Program(20QA1407100);the General Program of Natural Science Foundation of Shanghai(20ZR1438400)
Searching for novel solid electrolytes is of great importance and challenge for all-solid-state Mg batteries.In this work,we develop an amorphous Mg borohydride ammoniate,Mg(BH_(4))_(2)·2NH_(3),as a solid Mg electrol...
This work was financially supported by the National Natural Science Foundation of China Projects(Nos.52171205,21975168 and 52101249);the Anhui Provincial Natural Science Foundation for Ex-cellent Youth Scholars(No.2108085Y16);the Youth Science and Technology Fund Project of China Machinery Industry Group Co.,Ltd.(No.QNJJ-ZD-2022-01);the Natural Science Foundation of Anhui Province(No.2108085QE191);This work was also sup-ported by the Independent Research Fund Denmark for Technology and Production(No.9041-00226B);by FNRS(PDR T.0169.13,EQP U.N038.13,J.0164.17,CdR J.0073.20);the CommunautéFrançaise de Belgique under Grant ARC 18/23-093.
Mg(BH_(4))_(2) with several polymorphs,known as a high capacity(14.9 wt.%)hydrogen storage material,has become more intriguing due to the recently found new functions of gas physisorption and ionic conduc-tivity.Here ...
supported by the National Key Research and Development Plan(Grant No.2021YFB3802400);the National Natural Science Foundation of China(Grant Nos.52071141,52271212,52201250);the Equipment Pre-research Field Foundation(Grant No.6140721040101);the Interdisciplinary Innovation Program of North China Electric Power University(Grant No.XM2112355).
Metal borohydride ammoniates have become one of the most promising hydrogen storage materials due to their ultrahigh capacities.However,their application is still restricted by the high temperature of hydrogen desorpt...
H.S.acknowledges the Guangdong-Hong Kong-Macao Joint Laboratory (Grant No.2019B121205001),Macao Sci-ence and Technology Development Fund (FDCT) (Project No.0098/2020/A2),National Key Research and Development Program (No.2022YFE0206400),Natural Science Foundation of Guang-dong Province (No.2023A1515010765)and FDCT-MOST joint project (Grant No.0026/2022/AMJ)for funding.We also acknowl-edge the support of the National Natural Science Foundation of China (Grant No.52104309);Natural Science Foundation of Hubei Province (No.2021CFB011);“Macao Young Scholars Program”China (No.AM2020004);FDCT Funding Scheme for Postdoctoral Researchers (No.0026/APD/2021).
LiBH_(4) and Mg(BH_(4))_(2) with high theoretical hydrogen mass capacity receive significant attentions for hy-drogen storage.Also,these compounds can be potentially applied as solid-state electrolytes with their high...
This work was financially supported by the National Natural Science Foundation of China(Nos.22279118,22279117,52071135,51871090,and U1804135);the Fundamental Research Funds for the Universities of Henan Province(No.NSFRF220201).
The design of high-performance catalysts is the key to the efficient utilization of hydrogen energy.In this work,a PdCu nanoalloy was successfully anchored on TiO_(2)encapsulated with carbon to construct a catalyst.Ou...
supported by the National Natural Science Foundation of China(Nos.52171223 and U20A20237);the Zhejiang Provincial Natural Science Foundation of China(No.LZ21E010002).
Efficient technical strategies to synthesize hydrides with high capacity and favorable reversibility are significant for the development of novel energy materials.Herein,nano Mg-based borohydride,Mg(BH_(4))_(2),with r...
H.Z.and K.Z.contributed equally to this work.Financial supports from the National Natural Science Foundation of China (nos.22075254,52071135,51871090,U1804135,21805071,51671080,and 21401168);Plan for Scientific Inno-vation Talent of Henan Province (no.194200510019);Key Project of Educa-tional Commission of Henan Province (no.19A150025)are acknowledged.
Boron hydrides release an abundant amount of hydrogen in the presence of a suitable catalyst.Accelerating bimolecular activation kinetics is the key to designing cost-effective catalysts for borohydride hydrolysis.In ...
The modulating effects of Cu modification and oxalate or borohydride ligands functionalization on the structure,catalyst d-band center(εd),upper d-band edge(εu),and acetylene partial hydrogenation of expediently syn...
supported by National Key Research and Development Plan(2018YFB1502102);the National Natural Science Foundation of China(Grant no.52071141,51371056,51771056,51701043);the Equipment Pre-research Field Foundation(6140721040101);Interdisciplinary Innovation Program of North China Electric Power University(Grant no.XM2112355)。
Hydrogen storage in solid-state materials is believed to be a most promising hydrogen-storage technology for high efficiency,low risk and low cost.Mg(BH_(4))_(2)is regarded as one of most potential materials in hydrog...