Elucidation of the Effect of Functional Group Substitution of BN-cyclohexane for Renewable Energy Hydrogen Storage: Density Functional Theory Approach
Author:
Publisher
The Korean Society of Mineral and Energy Resources Engineers
Subject
Electrical and Electronic Engineering,Atomic and Molecular Physics, and Optics
Link
http://www.jksmer.or.kr/articles/pdf/doi/10.32390/ksmer.2022.59.1.021.pdf
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3. Campbell, P.G., Zakharov, L.N., Grant, D.J., Dixon, D.A., and Liu, S.Y., 2010. Hydrogen Storage by Boron−Nitrogen Heterocycles: A Simple Route for Spent Fuel Regeneration,
4. Chen, G., Zakharov, L.N., Bowden, M.E., Karkamkar, A.J., Whittemore, S.M., Garner III, E.B., Mikulas, T.C., Dixon, D.A., Autrey, T., and Liu, S.Y., 2015. Bis-BN cyclohexane: a remarkably kinetically stable chemical hydrogen storage material,
5. Dresselhaus, M.S. and Thomas, I.L., 2001. Alternative energy technologies,
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1. Research Trends in New and Renewable Energy Technology Focusing on Papers Published in Korean/English Journals of the Korean Society of Mineral and Energy Resources Engineers;Journal of the Korean Society of Mineral and Energy Resources Engineers;2022-10-31
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