Thermolysis and solid state NMR studies of NaB3H8, NH3B3H7, and NH4B3H8

In an effort to broaden the search for high-capacity hydrogen storage materials, three triborane compounds, NaB(3)H(8), NH(3)B(3)H(7), and NH(4)B(3)H(8), were studied. In addition to hydrogen, thermal decomposition also releases volatile boranes, and the relative amounts and species depend on the ca...

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Veröffentlicht in:Dalton transactions : an international journal of inorganic chemistry 2013-01, Vol.42 (3), p.701-708
Hauptverfasser: Huang, Zhenguo, Eagles, Mitch, Porter, Spencer, Sorte, Eric G, Billet, Beau, Corey, Robert L, Conradi, Mark S, Zhao, Ji-Cheng
Format: Artikel
Sprache:eng
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Zusammenfassung:In an effort to broaden the search for high-capacity hydrogen storage materials, three triborane compounds, NaB(3)H(8), NH(3)B(3)H(7), and NH(4)B(3)H(8), were studied. In addition to hydrogen, thermal decomposition also releases volatile boranes, and the relative amounts and species depend on the cations (Na(+), NH(4)(+)) and the Lewis base (NH(3)). Static-sample hydrogen NMR is used to probe molecular motion in the three solids. In each case, the line width decreases from low temperatures to room temperature in accordance with a model of isotropic or nearly isotropic reorientations. Such motions also explain a deep minimum in the relaxation time T(1). Translational diffusion never appears to be rapid on the 10(-5) s time scale of NMR.
ISSN:1477-9234
DOI:10.1039/c2dt31365k