Beryllium borohydride
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Names
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IUPAC name
Beryllium borohydride
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Other names
Beryllium tetrahydroborate(1−), Beryllium tetrahydroborate(III)
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Identifiers
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ChemSpider
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UNII
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InChI=1S/2BH4.Be/h2*1H4;/q2*-1;+2 Key: ONQXRAXVSQRPSX-UHFFFAOYSA-N
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Properties
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Be[BH4]2
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Molar mass
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38.70 g·mol−1
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Appearance
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white crystals
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Density
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0.604 g/cm3
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Melting point
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91.3 °C (196.3 °F; 364.4 K)
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Boiling point
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123 °C (253 °F; 396 K) decomposes
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reacts
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Solubility
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soluble in benzene, diethyl ether
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Structure
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tetragonal
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I41cd, No. 110
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Thermochemistry
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−108 kJ/mol
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Hazards
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NIOSH (US health exposure limits):
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TWA 0.002 mg/m3 C 0.005 mg/m3 (30 minutes), with a maximum peak of 0.025 mg/m3 (as Be)[1]
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Ca C 0.0005 mg/m3 (as Be)[1]
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Ca [4 mg/m3 (as Be)][1]
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Except where otherwise noted, data are given for materials in their standard state (at 25 °C [77 °F], 100 kPa).
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Chemical compound
Beryllium borohydride is an inorganic compound with the chemical formula Be[BH4]2.[2]
Preparation
Beryllium borohydride is formed by the reaction of beryllium hydride with diborane in an ether solution.
It can also be formed by the reaction of beryllium chloride and lithium borohydride in a sealed tube at 120 °C:[2]
- BeCl2 + 2 Li[BH4] → Be[BH4]2 + 2 LiCl
Structure
The chemical formula of beryllium borohydride can be written as Be2+([BH4]−)2. The crystal structure is made up of a helical polymer of BH4Be and BH4 structure units.[2][3] The borohydride ions, [BH4]−, adopt a tetrahedral geometry.[3] Beryllium is 6-coordinate and adopts a distorted trigonal prismatic geometry.[2]
Application
The purest beryllium hydride is obtained by the reaction of triphenylphosphine, PPh3, with beryllium borohydride, Be[BH4]2 at 180 °C:[2]
- Be[BH4]2 + 2 PPh3 → 2 Ph3P+−−BH3 + BeH2
References
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Beryllium(I) | |
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Beryllium(II) |
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