4.8 Article

Metal-Organic Frameworks as Heterogeneous Catalysts in Hydrogen Production from Lightweight Inorganic Hydrides

期刊

ACS CATALYSIS
卷 7, 期 8, 页码 5035-5045

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acscatal.7b01495

关键词

metal-organic frameworks; hydrogen; ammonia borane; hydrazine; borohydrides; alanates

资金

  1. CNR-RFBR Italy-Russian Federation bilateral project of the Italian National Research Council
  2. Italian MIUR through the PRIN Project SMARTNESS [2015K7FZLH]

向作者/读者索取更多资源

Ammonia-borane (NH3 center dot BH3, AB), hydrazine (NH2NH2), lithium borohydride (Li(BH4)), and sodium alanate (Na(AlH4)) are popular chemical hydrogen storage inorganic solid materials featuring high gravimetric hydrogen contents (H wt %) and remarkable stability under ambient conditions. Ultrapure H-2 is formed from these compounds either via pyrolysis (i.e., a simple material heating) or via hydrolysis (chemical reaction with water). In both cases, a series of homogeneous and heterogeneous catalysts have been designed to assist the process. Among the latter, metal-organic frameworks (MOFs, crystalline 3D porous lattices made of metallic nodes and organic polytopic linkers) have rapidly emerged as versatile candidates for this role. The nanoconfinement of lightweight hydrides in MOFs produces a hydride@MOF composite material. Hydride coordination to MOF exposed metal sites or its reaction with functional groups on the organic linkers facilitates the thermal decomposition, lowering the hydrogen release temperature and increasing the hydrogen production rate. For hydrolysis, MOFs are used as templates for the preparation of metal(0) nanopartides (NPs) uniformly distributed through preliminary impregnation with a solution containing a metal salt followed by reduction. The NPs@MOF are the real active species that catalyze the reaction between the hydride and water, with concomitant H-2 evolution. This perspective highlights the most representative literature examples of MOFs as heterogeneous catalysts (or catalyst supports) for H-2 production from inorganic lightweight hydrides. Future trends in the field will also be discussed.

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