氢气储存
气凝胶
脱氢
间苯二酚
化学工程
氢
碳纤维
动力学
材料科学
化学
纳米技术
催化作用
有机化学
复合材料
复合数
工程类
物理
量子力学
作者
Rapee Gosalawit–Utke,Chiara Milanese,Payam Javadian,Julian Jepsen,Daniel Laipple,Fahim Karmi,Julián Puszkiel,Torben R. Jensen,Amedeo Marini,Thomas Klassen,Martin Dornheim
标识
DOI:10.1016/j.ijhydene.2012.12.123
摘要
Nanoconfinement of 2LiBH4–MgH2–TiCl3 in resorcinol–formaldehyde carbon aerogel scaffold (RF–CAS) for reversible hydrogen storage applications is proposed. RF–CAS is encapsulated with approximately 1.6 wt. % TiCl3 by solution impregnation technique, and it is further nanoconfined with bulk 2LiBH4–MgH2 via melt infiltration. Faster dehydrogenation kinetics is obtained after TiCl3 impregnation, for example, nanoconfined 2LiBH4–MgH2–TiCl3 requires ∼1 and 4.5 h, respectively, to release 95% of the total hydrogen content during the 1st and 2nd cycles, while nanoconfined 2LiBH4–MgH2 (∼2.5 and 7 h, respectively) and bulk material (∼23 and 22 h, respectively) take considerably longer. Moreover, 95–98.6% of the theoretical H2 storage capacity (3.6–3.75 wt. % H2) is reproduced after four hydrogen release and uptake cycles of the nanoconfined 2LiBH4–MgH2–TiCl3. The reversibility of this hydrogen storage material is confirmed by the formation of LiBH4 and MgH2 after rehydrogenation using FTIR and SR-PXD techniques, respectively.
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