4.8 Article

Towards an understanding of the beneficial effect of mesoporous materials on the dehydrogenation characteristics of NH3BH3

期刊

APPLIED CATALYSIS B-ENVIRONMENTAL
卷 201, 期 -, 页码 182-188

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.apcatb.2016.08.040

关键词

Ammoniaborane; Hydrogen storage; Mesoporous SiO2; Reaction mechanism thermal analysis

资金

  1. Science Foundation Ireland [07/SRC/B1160]
  2. Science Foundation Ireland (SFI) [07/SRC/B1160] Funding Source: Science Foundation Ireland (SFI)

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Ammonia borane (AB) was loaded onto a range of mesoporous materials (MCM-41, SBA-15 and MCF) by wet impregnation from THF solutions and its thermal dehydrogenation studied using TGA/MS. The interactions between the AB and the surfaces were characterised using difference FTIR spectroscopy. The presence of mesoporous materials promotes lower temperature H-2 release, and greater selectivity towards the formation of H-2, i.e. decreased formation of gaseous boron-containing side products. D-FTIR results confirm interactions between isolated silanol groups or surface Si-O-Si species and AB and this supports the proposal that a H-bonding interaction between the surface and deposited AB is important in promoting decomposition at lower temperature. AB interacting with silanol groups decomposes more readily than that coordinated to Si-O-Si. The effect on the temperature of H-2 release is greater for materials of larger pore size (rather than materials of larger surface area), i.e. MCF>SBA-15>MCM-41. This suggests that access to the internal surface of the mesoporous material (where the majority of surface silanols are located) is important, and this in turn suggests that polymeric species, which may have restricted access to the internal surface of the different materials, form when AB is dissolved in THF. Decomposition of B-N-containing gaseous materials (to AB(g)) following their formation, on the silanol groups of the SiO2, is suggested as the reason for the increased selectivity of the reaction to H-2 (and decreased release of unwanted side products) in the presence of mesoporous material. (C) 2016 Elsevier B.V. All rights reserved.

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