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Reichenauer, G., Rzepka, M., Bauer, E., Schliermann, T., Bernhardt, B., Bohmhammel, K., Henneberg, E., Knoll, U., Maneck, H.E. and Braue, W. (2006) Hydrogen Storage Capacity of Catalytically Grown Carbon Nanofibers. Proceedings of International Conference on Carbon, The Robert Gordon University, Aberdeen, 6-21 July 2006.
has been cited by the following article:
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TITLE:
Fundamental Open Questions on Engineering of “Super” Hydrogen Sorption in Graphite Nanofibers: Relevance for Clean Energy Applications
AUTHORS:
Yury S. Nechaev, Alp Yürüm, Adem Tekin, Nilgün Karatepe Yavuz, Yuda Yürüm, T. Nejat Veziroglu
KEYWORDS:
Hydrogen “Super” Sorption (Storage), Graphenes, Carbon Nanotubes, Graphite Nanofibers, A Breakthrough Hydrogen Storage Nanotecnology, Clean Energy Applications
JOURNAL NAME:
American Journal of Analytical Chemistry,
Vol.5 No.16,
November
25,
2014
ABSTRACT: Herein, some fundamental open questions on engineering of “super” hydrogen sorption (storage) in carbonaceous nanomaterials are considered, namely: 1) on thermodynamic stability and related characteristics of some hydrogenated graphene layers nanostructures: relevance to the hydrogen storage problem; 2) determination of thermodynamic characteristics of graphene hydrides; 3) a treatment and interpretation of some recent STM, STS, HREELS/LEED, PES, ARPS and Raman spectroscopy data on hydrogensorbtion with epitaxial graphenes; 4) on the physics of intercalation of hydrogen into surface graphene-like nanoblisters in pyrolytic graphite and epitaxial graphenes; 5) on the physics of the elastic and plastic deformation of graphene walls in hydrogenated graphite nanofibers; 6) on the physics of engineering of “super” hydrogen sorption (storage) in carbonaceous nanomaterials, in the light of analysis of the Rodriguez-Baker extraordinary data and some others. These fundamental open questions may be solved within several years.