Mechano-chemical activation of the (3LiBH4 + TiF3) system, its dehydrogenation behavior and the effects of ultrafine filamentary Ni and graphene additives

Author:

Bidabadi Amirreza Shirani12345,Varin Robert A.12345,Polanski Marek6789,Stobinski Leszek101112139

Affiliation:

1. Department of Mechanical and Mechatronics Engineering

2. Waterloo Institute for Nanotechnology

3. University of Waterloo

4. Waterloo

5. Canada N2L 3G1

6. Faculty of Advanced Technology and Chemistry

7. Military University of Technology

8. 00-908 Warsaw

9. Poland

10. Faculty of Materials Science and Engineering

11. Graphene Laboratory

12. Warsaw University of Technology

13. 00-645 Warsaw

Abstract

Ball milling (BM) for 5 h reduced the thermal release of B2H6 to nearly zero.

Funder

Natural Sciences and Engineering Research Council of Canada

Publisher

Royal Society of Chemistry (RSC)

Subject

General Chemical Engineering,General Chemistry

Reference45 articles.

1. D. S. Scott , Smelling land-the hydrogen defense against climate catastrophe, Canadian Hydrogen Association, Westmount, QC, 2007

2. R. A. Varin , T.Czujko and Z. S.Wronski, Nanomaterials for solid state hydrogen storage, New York, Springer Science Business Media, 2009

3. R. A. Varin and Z. S.Wronski, Progress in hydrogen storage in complex hydrides, in Renewable Hydrogen Technologies. Production, Purification, Storage, Applications and Safety, ed. L. M. Gandia, G. Arzamendi and P. M. Diéguez, Elsevier, 2013, ch. 13, pp. 293–332, ISBN: 978-0-444-56352-1

4. High capacity hydrogenstorage materials: attributes for automotive applications and techniques for materials discovery

5. Nanostructured, complex hydride systems for hydrogen generation

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