Influences of lithium doping and fullerene impregnation on hydrogen storage in metal organic frameworks
✍ Scribed by Rao, Dewei; Lu, Ruifeng; Meng, Zhaoshun; Xu, Genjian; Kan, Erjun; Liu, Yuzhen; Xiao, Chuanyun; Deng, Kaiming
- Book ID
- 120424975
- Publisher
- Taylor and Francis Group
- Year
- 2013
- Tongue
- English
- Weight
- 321 KB
- Volume
- 39
- Category
- Article
- ISSN
- 0892-7022
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In this work, we prepared platinum doped on activated carbons/metal-organic frameworks-5 hybrid composites (Pt-ACs-MOF-5) to obtain a high hydrogen storage capacity. The surface functional groups and surface charges were confirmed by Fourier transfer infrared spectroscopy (FT-IR) and zeta-potential
## Abstract Covalent‐organic framework COF‐1 and metal‐organic frameworks HKUST‐1 and MIL‐101 were synthesized and studied for hydrogen storage at 77 and 298 K. Although MIL‐101 had the largest surface area and pore volume among the three materials, HKUST‐1 had the highest uptake (2.28 wt %) at 77