共 62 条
- [1] CHEN F, ZHANG X H, GUAN X N, Et al., Nitrogen-doped or boron-doped twin T-graphene as advanced and reversible hydrogen storage media, Applied Surface Science, 622, (2023)
- [2] SALEHABADI A, DAWI E A, ALI SABUR D, Et al., Progress on nano-scaled alloys and mixed metal oxides in solid-state hydrogen storage: An overview, Journal of Energy Storage, 61, (2023)
- [3] CHANDRA MUDULI R, KALE P., Silicon nanostructures for solid-state hydrogen storage: A review, International Journal of Hydrogen Energy, 48, 4, pp. 1401-1439, (2023)
- [4] TANG D, TAN G L, LI G W, Et al., State-of-the-art hydrogen generation techniques and storage methods: A critical review, Journal of Energy Storage, 64, (2023)
- [5] SATYAPAL S, PETROVIC J, READ C, Et al., The U. S. Department of Energy’s National Hydrogen Storage Project: Progress towards meeting hydrogen-powered vehicle requirements, Catalysis Today, 120, 3, pp. 246-256, (2007)
- [6] AMIRTHAN T, PERERA M S A., The role of storage systems in hydrogen economy: A review, Journal of Natural Gas Science and Engineering, 108, (2022)
- [7] NAGAR R, SRIVASTAVA S, HUDSON S L, Et al., Recent developments in state-of-the-art hydrogen energy technologies—Review of hydrogen storage materials, Solar Compass, 5, (2023)
- [8] ZHANG T T, URATANI J, HUANG Y X, Et al., Hydrogen liquefaction and storage: Recent progress and perspectives, Renewable and Sustainable Energy Reviews, 176, (2023)
- [9] WANG Z X, TIAN Z H, YAO P F, Et al., Improved hydrogen storage kinetic properties of magnesium-based materials by adding Ni<sub>2</sub>P, Renewable Energy, 189, pp. 559-569, (2022)
- [10] EISAPOUR A H, EISAPOUR M, TALEBIZADEHSARDARI P, Et al., An innovative multi-zone configuration to enhance the charging process of magnesium based metal hydride hydrogen storage tank, Journal of Energy Storage, 36, (2021)