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Recent advances in the nanoconfinement of Mg-related hydrogen storage materials:A minor review 被引量:2

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摘要 Hydrogen is an ideal clean energy because of its high calorific value and abundance of sources.However,storing hydrogen in a compact,inexpensive,and safe manner is the main restriction on the extensive utilization of hydrogen energy.Magnesium(Mg)-based hydrogen storage material is considered a reliable solid hydrogen storage material with the advantages of high hydrogen storage capacity(7.6wt%),good performance,and low cost.However,the high thermodynamic stability and slow kinetics of Mg-based hydrogen storage materials have to be overcome.In this paper,we will review the recent advances in the nanoconfinement of Mg-related hydrogen storage materials by loading Mg particles on different supporting materials,including carbons,metal-organic frameworks,and other materials.Perspectives are also provided for designing high-performance Mg-based materials using nanoconfinement.
出处 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2023年第1期14-24,共11页 矿物冶金与材料学报(英文版)
基金 financially supported by the research programs of the National Natural Science Foundation of China (No. 52101274) the Natural Science Foundation of Shandong Province, China (No. ZR2020QE011) the Youth Top Talent Foundation of Yantai University, China (No. 2219008)
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  • 1Jian Zhang,Shuai Yan,Guanglin Xia,Xiaojie Zhou,Xianzheng Lu,Linping Yu,Xuebin Yu,Ping Peng.Stabilization of low-valence transition metal towards advanced catalytic effects on the hydrogen storage performance of magnesium hydride[J].Journal of Magnesium and Alloys,2021,9(2):647-657. 被引量:8
  • 2Qian Li,Kuangdi Xu,Kuochih Chou,Xionggang Lu,Qin Lin.Kinetics of hydrogen absorption and desorption of a mechanically milled MgH_2+5at%V nanocomposite[J].Journal of University of Science and Technology Beijing,2006,13(4):359-362. 被引量:3
  • 3Lin ZHU Xiu Hong FENG Yan Lin YU.Bispinor Space[J].Acta Mathematica Sinica,English Series,2007,23(9):1629-1638. 被引量:1
  • 4Liu C, Li F, Ma LP, Cheng HM. Advanced materials for energy storage. Adv Mater. 2010;22(8):E1.
  • 5Kalinichenka S, Rntzsch L, Baehtz C, Kieback B. Hydrogen desorption kinetics of melt-spun and hydrogenated Mg90Ni|0 and Mg8oNi|0Y10 using in situ synchrotron, X-ray diffraction and thermogravimetry. J Alloys Compd. 2010;496(l-2):608.
  • 6Jain IP, Lai C, Jain A. Hydrogen storage in Mg: a most promising material. Int J Hydrog Energy. 2010;35(10):5133.
  • 7He L, Wang SM, Li ZN, Liu XP, Jiang LJ. Synthesis of magnesium alanate by ball milling MgH2 and A1C13 mixtures. Rare Met. 2011 ;30(1):55.
  • 8Zeng K, Klassen T, Oelerich W, Bormann R. Critical assessment and thermodynamic modeling of the Mg-H system. Int J Hydrog Energy. 1999;24(10):989.
  • 9Kim KC, Dai B, Johnson JK, Sholl DS. Assessing nanoparticle size effects on metal hydride thermodynamics using the Wulff construction. Nanotechnology. 2009;20(20):7.
  • 10Wagemans RWP, Van Lenthe JH, De Jongh PE, Van Dillen AJ, De Jong KP. Hydrogen storage in magnesium clusters: quantum chemical study. J Am Chem Soc. 2005;127(47):16675.

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