287717
Borane-ammonia complex
technical grade, 90%
Synonym(s):
Amminetrihydroboron, Borazane
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About This Item
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grade
technical grade
Assay
90%
form
solid
reaction suitability
reagent type: reductant
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SMILES string
B.N
InChI
1S/BH3.H3N/h2*1H3
InChI key
WZMUUWMLOCZETI-UHFFFAOYSA-N
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General description
Ammonia borane, also known as borazane has high hydrogen content (about 20% mass). Thermal decomposition of borazane takes place in the temperature range of 350-410K accompanied by hydrogen release and heat evolution. It may find use as a hydrogen source in fuel cells in the future.
Borane-ammonia complex is a novel material, where ammonia is tightly bound to a ligand through all four of its atoms. It is a donor-acceptor complex that is formed by electron donation from a Lewis base (NH3) to a Lewis acid (BH3). It shows a B-N bond distance of 1.564 Å.
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Application
Borazane acts as a mild, efficient, and stereoselective reducing agent for aldehydes and ketones in protic or nonprotic media.It can be used as a storage medium for release of hydrogenBorazane is popularly used as an ammonia borane (AB) source for the formation of hexagonal boron nitride monolayers which are used as a substrate for graphene growth.
Storage Class Code
11 - Combustible Solids
WGK
WGK 3
Personal Protective Equipment
dust mask type N95 (US), Eyeshields, Gloves
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International Journal of Hydrogen Energy, 36, 10870-10870 (2011)
Tetrahedron, 67, 7121-7127 (2011)
Journal of the American Chemical Society, 133(42), 17093-17099 (2011-10-04)
Studies of the activating effect of Verkade's base, 2,8,9-triisobutyl-2,5,8,9-tetraaza-1-phosphabicyclo[3.3.3]undecane (VB), on the rate and extent of H(2) release from ammonia borane (AB) have led to the syntheses and structural characterizations of three anionic aminoborane chain-growth products that provide direct support
ACS nano, 7(11), 10129-10138 (2013-11-05)
Graphene-boron nitride monolayer heterostructures contain adjacent electrically active and insulating regions in a continuous, single-atom thick layer. To date structures were grown at low pressure, resulting in irregular shapes and edge direction, so studies of the graphene-boron nitride interface were
Thermal decomposition of B-N-H compounds investigated by using combined thermoanalytical methods.
Thermochimica Acta, 391(1), 159-168 (2002)
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