4.6 Article

Scandium functionalized carbon aerogel: Synthesis of nanoparticles and structure of a new ScOCl and properties of NaAlH4 as a function of pore size

期刊

JOURNAL OF SOLID STATE CHEMISTRY
卷 231, 期 -, 页码 190-197

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.jssc.2015.08.035

关键词

Nanoconfinement; Sodium alanate; Carbon Aerogel; Scandium-functionalization; Nanoeffect

资金

  1. CarlsbergFondet
  2. Danish National Research Foundation
  3. Centre for Materials Crystallography [DNRF93]
  4. Danish Council for Strategic Research (the project HyFillFast)
  5. Danish Council for Independent Research Natural Science (DanScatt)
  6. European Community
  7. Fuel Cells and Hydrogen Joint Undertaking (FCH JU) [BOR4STORE (303428)]
  8. COST Action [MP1103]
  9. Ministry of Science and Higher Education [POIG.01.03.01-14-016/08]

向作者/读者索取更多资源

A new method for scandium-functionalization of carbon aerogels forming nanoparticles of a new scandiumoxochloride, ScOCl is presented. Sodium aluminiumhydride, NaAlH4, is successfully melt infiltrated into the nano porous scaffolds with pore sizes of D-max =7, 10, 13, 21, 26 and 39 nm, containing scandium based nano particles ( < 2.9 wt%) confirmed by elemental analysis and scanning electron microscopy. A systematic study of hydrogen storage properties of the nano composite materials is presented. An aqueous solution of ScCl3 was initially infiltrated and formed nanoconfined [Sc(OH)(H2O)(5)](2)Cl-4(H2O)(2), which transforms to nanoparticles of a new scandium oxochloride, ScOCl at 192 degrees C and to Sc2O3 at 420 degrees C. ScOCI crystallizes in an orthorhombic unit cell a=3.4409(8), b=3.9613 (6) and c=8.178(2) angstrom, space group Pmmn, and is built from layers of [ScO4Cl2] octahedra forming neutral ScOCl layers. Temperature programmed desorption mass spectroscopy shows slightly improved kinetics for release of hydrogen with decreasing pore size. Continuous cycling of hydrogen release and uptake measured by the Sieverts' method reveal a larger preserved hydrogen storage capacity for scandium-functionalized aerogel with the larger pores (39 nm). (C) 2015 Elsevier Inc. All rights reserved.

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