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- W3039762502 abstract "In the field of energy storage, recently investigated nanocomposites show promise in terms of high hydrogen uptake and release with enhancement in the reaction kinetics. Among several, carbonaceous nanovariants like carbon nanotubes (CNTs), fullerenes, and graphitic nanofibers reveal reversible hydrogen sorption characteristics at 77 K, due to their van der Waals interaction. The spillover mechanism combining Pd nanoparticles on the host metal-organic framework (MOF) show room temperature uptake of hydrogen. Metal or complex hydrides either in the nanocomposite form and its subset, nanocatalyst dispersed alloy phases illustrate the concept of nanoengineering and nanoconfinement of particles with tailor-made properties for reversible hydrogen storage. Another class of materials comprising polymeric nanostructures such as conducting polyaniline and their functionalized nanocomposites are versatile hydrogen storage materials because of their unique size, high specific surface-area, pore-volume, and bulk properties. The salient features of nanocomposite materials for reversible hydrogen storage are reviewed and discussed." @default.
- W3039762502 created "2020-07-10" @default.
- W3039762502 creator A5002032108 @default.
- W3039762502 creator A5016038818 @default.
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- W3039762502 creator A5053955192 @default.
- W3039762502 creator A5079794135 @default.
- W3039762502 creator A5089385918 @default.
- W3039762502 date "2020-07-03" @default.
- W3039762502 modified "2023-10-17" @default.
- W3039762502 title "Reversible Hydrogen Storage Using Nanocomposites" @default.
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- W3039762502 doi "https://doi.org/10.3390/app10134618" @default.
- W3039762502 hasPublicationYear "2020" @default.