Hydrogen storage capacity of Li-decorated borophene

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Hydrogen storage capacity of Li-decorated borophene ( hydrogen-storage-capacity-li-decorated-borophene )

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[2] P. S. Krishna, S. Styring, F. Mamedov, Photosystem ratio imbalance promotes direct sustainable H2 production in Chlamydomonas reinhardtii, Green Chem. 21 (2019) 4683–90. [3] S.Rumpel,J.F.Siebel,C.Fare`s,J.Duan,E.Reijerse,T.Happe,W.Lubitz,M.Winkler,Enhancinghy- drogen production of microalgae by redirecting electrons from photosystem I to hydrogenase, Energy Environ. Sci. 7 (2014) 3296–301. [4] D. P. Broom, C. J. Webb, G. S. Fanourgakis, G. E. Froudakis, P. N. Trikalitis, M. Hirscher, Concepts for improving hydrogen storage in nanoporous materials, Int. J. Hydrogen Energy 44 (2019) 7768–79. [5] M. D. Allendorf, Z. Hulvey, T. Gennett, A. Ahmed, T. Autrey, J. Camp, E. S. Cho, H. Furukawa, M. Haranczyk, M. Head-Gordon, S. Jeong, A. Karkamkar, D.-J. Liu, J. R. Long, K. R. Meihaus, I. H. Nayyar, R. Nazarov, D. J. Siegel, V. Stavila, J. J. Urban, S. P. Veccham, B. C. Wood, An assessment of strategies for the development of solid-state adsorbents for vehicular hydrogen storage, Energy Environ. Sci. 11 (2018) 2784–812. [6] C. Ahn, J. Purewal, Storage materials based on hydrogen physisorption, in: Hydrogen Storage Tech- nology. Materials and Applications, CRC Press, 2016, pp. 213–38. [7] D. Pukazhselvan, V. Kumar, S. K. Singh, High capacity hydrogen storage: Basic aspects, new deve- lopments and milestones, Nano Energy 1 (2012) 566–89. [8] K. J. Gross, K. R. Carrington, S. Barcelo, A. Karkamkar, J. Purewal, P. Parrilla, Reco- mmended best practices for the characterization of storage properties of hydrogen storage materials, Report to the Department of Energy Office of Energy Efficiency and Renewa- ble Energy Hydrogen Storage Program under National Renewable Energy Laboratory Con- tract No. 147388, H2 Technology Consulting LLC (2012), Accessed October 10, 2020. http://energy.gov/eere/fuelcells/downloads/recommended-best-practices-characterization-storage- properties-hydrogen-0 and http://energy.gov/sites/prod/files/2014/03/f12/best practices hydrogen storage.pdf. [9] D. P. Broom, Hydrogen sorption properties of materials, in: Hydrogen Storage Materials. The Charac- terisation of Their Storage Properties, Springer-Verlag, London, 2011, pp. 61–116. [10] C. Liu, F. Li, L.-P. Ma, H.-M. Cheng, Advanced materials for energy storage, Adv. Mater. 22 (2010) E28–62. 20

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