可再生能源
化石燃料
吸附
氢
清洁能源
氢燃料
可持续能源
环境科学
化学工程
气候变化
材料科学
化学
工艺工程
自然资源经济学
环境保护
有机化学
地质学
工程类
经济
海洋学
电气工程
作者
John Letwaba,Uwa O. Uyor,Mapula Lucey Mavhungu,Nwoke Oji Achuka,A.P.I. Popoola
出处
期刊:RSC Advances
[Royal Society of Chemistry]
日期:2024-01-01
卷期号:14 (20): 14233-14253
被引量:63
摘要
Climate change is causing a rise in the need to transition from fossil fuels to renewable and clean energy such as hydrogen as a sustainable energy source. The issue with hydrogen's practical storage, however, prevents it from being widely used as an energy source. Current solutions, such as liquefied and compressed hydrogen storage, are insufficient to meet the U.S. Department of Energy's (US DOE) extensive on-board application requirements. Thus, a backup strategy involving material-based storage is required. Metal organic frameworks (MOFs) belong to the category of crystalline porous materials that have seen rapid interest in the field of energy storage due to their large surface area, high pore volume, and modifiable structure. Therefore, advanced technologies employed in the construction of MOFs, such as solvothermal, mechanochemical, microwave assisted, and sonochemical methods are reviewed. Finally, this review discussed the selected factors and structural characteristics of MOFs, which affect the hydrogen capacity.
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