An indium-based microporous metal–organic framework with unique three-way rod-shaped secondary building units for efficient methane and hydrogen storage
In: Inorganic Chemistry Frontiers, Jg. 9 (2022-12-06), Heft 24
academicJournal
- 6527 - 6533
Zugriff:
A novel microporous indium-based MOF material with unique 3-way rod-shaped secondary building units (SBUs), UTSA-22, was reported and exhibited high methane (CH4) and hydrogen (H2) storage. At 298 K and 65 bar, the total CH4 volumetric uptake of UTSA-22 is 174 cm3(STP) cm−3. Moreover, UTSA-22 shows a high CH4 working capacity of 146 cm3(STP) cm−3 in a pressure range of 5-65 bar at 298 K. In addition, UTSA-22 shows a high H2 gravimetric storage capacity (1.2 wt%) at 298 K and 100 bar.
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An indium-based microporous metal–organic framework with unique three-way rod-shaped secondary building units for efficient methane and hydrogen storage
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Autor/in / Beteiligte Person: | Cui, Hui ; Ye, Yingxiang ; Lin, Ruibiao ; Shi, Yanshu ; Alothman, Zeid A ; Alduhaish, Osamah ; Wang, Bin ; Zhang, Jian ; Chen, Banglin |
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Zeitschrift: | Inorganic Chemistry Frontiers, Jg. 9 (2022-12-06), Heft 24 |
Veröffentlichung: | eScholarship, University of California, 2022 |
Medientyp: | academicJournal |
Umfang: | 6527 - 6533 |
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