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    Sodium deuteride boron

    Sodium boron deuteride (NaBD₄) is an important inorganic compound. It is synthesized from sodium, boron, and deuterium by a specific chemical reaction. Sodium is a silvery-white alkali metal with high reactivity; Boron is a non-metallic element with unique electronic structure and chemical properties; Deuterium is an isotope of hydrogen that contains a proton and a neutron.
  • Category:
    deuteride
  • Browse number:
    166
  • Release time:
    2024-08-22 13:59:12
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NameSodium borodeuteride
SynonymsSodium borodeuteride
Sodium borohydride-d4
sodium tetrahydroborate
Sodium tetradeuterioboron
Deuterated sodium borohydride
Sodium borodeuteride, for NMR
sodium (~2~H_4_)tetrahydroborate
SodiumborodeuterideatmDWhitepowder
CAS15681-89-7
EINECS239-764-7
InChIInChI=1/BH4.Na/h1H4;/q-1;+1/i1D4
Physico-chemical Properties
Molecular FormulaBD4Na
Molar Mass41.86
Density1.187 g/mL
Melting Point>300 °C (dec.) (lit.)
SolubilitySoluble in liquid ammonia, amines and pyridine.
AppearancePowder and/or Chunks
Specific Gravity1.074
ColorWhite to off-white to slightly gray
Storage Conditionwater-free area
SensitiveMoisture Sensitive
Risk and Safety
Risk CodesR11 - Highly Flammable
R15 - Contact with water liberates extremely flammable gases
R24/25 -
R34 - Causes burns
Safety DescriptionS16 - Keep away from sources of ignition.
S36/37/39 - Wear suitable protective clothing, gloves and eye/face protection.
S43 - In case of fire use ... (there follows the type of fire-fighting equipment to be used.)
S45 - In case of accident or if you feel unwell, seek medical advice immediately (show the label whenever possible.)
S7/8 -
S26 - In case of contact with eyes, rinse immediately with plenty of water and seek medical advice.
S22 - Do not breathe dust.
UN IDsUN 1426 4.3/PG 1
WGK Germany3
FLUKA BRAND F CODES45586
HS Code28459000
Hazard Class4.3
Packing GroupI
Reference Information
usesreagents for the preparation of α,α-dideuterated-β-amino acids. For the preparation of amine-stabilized deuterated borane THF.
autoignition temperature752°F.



 Energy field

Sodium boron deuteride plays an important role in the energy field. As a Hydrogen storage material, it has high hydrogen storage density and excellent cycling performance, which provides a broad space for hydrogen energy development. Through a carefully designed process, sodium boron deuteride can achieve efficient and safe hydrogen storage, providing a material basis for hydrogen Fuel cells, hydrogen vehicles and other applications. The technology will promote the rapid development of the hydrogen energy industry and help build a clean and efficient energy system.


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