Lithium deuteride
Lithium deuteride Basic information
- Product Name:
- Lithium deuteride
- Synonyms:
-
- LITHIUM DEUTERIDE
- LITHIUM DEUTERIDE (D)
- LiD
- Lithiumdeuteride,99+%isotopicpurity
- lithium hydride-d
- LITHIUM DEUTERIDE ISOTOPIC PURITY
- Lithium deuteride, 98%(Isotopic)
- LITHIUM DEUTERIDE, 99 ATOM% D, FOR NMR
- CAS:
- 13587-16-1
- MF:
- DLi
- MW:
- 8.96
- EINECS:
- 237-018-5
- Product Categories:
-
- metal hydride
- Mol File:
- 13587-16-1.mol
Lithium deuteride Chemical Properties
- Melting point:
- 680 °C
- Density
- 0.82
- storage temp.
- water-free area
- solubility
- reacts with H2O
- form
- Powder
- Specific Gravity
- 0.82
- color
- Gray
- Sensitive
- Air & Moisture Sensitive
- InChIKey
- SIAPCJWMELPYOE-IEOVAKBOSA-N
Safety Information
- Hazard Codes
- F,C
- Risk Statements
- 11-14-34
- Safety Statements
- 16-26-36/37/39-45-7/9
- RIDADR
- UN 1414 4.3/PG 1
- WGK Germany
- 3
- HazardClass
- 4.3
- PackingGroup
- I
- HS Code
- 28459000
MSDS
- Language:English Provider:SigmaAldrich
- Language:English Provider:ACROS
- Language:English Provider:ALFA
Lithium deuteride Usage And Synthesis
Chemical Properties
Lithium deuteride at ambient has the NaCl (rock salt) structure: two interlaced FCC lattices; 5 eV band gap: single crystal samples are transparent.
Lithium deuteride come in single crystals, (packed) powders, or pressed into cakes.
Uses
Lithium deuteride is an isotopically labeled derivative of lithium hydride, Used in thermonuclear fusion; Used as the explosive in the hydrogen bomb and used for hydrogen storage and also in the synthesis of rocket fuel.
Preparation
Lithium deuteride has been prepared by the direct combination of lithium and deuterium at 700°, the deuterium having been obtained from the oxide by the use of magnesium.
The laboratory preparation of lithium deuteride and lithium aluminium deuteride
General Description
Lithium deuteride (LiD) is a stable isotopic compound that is commonly used in deuterium storage and energy storage applications because of its high melting point, low density, high deuterium concentration, and exceptional thermal stability in both vacuum and inert gases. It can also be used as a potential raw material for the synthesis of organic deuterides, deuterated solvents, and deuterated polymers.
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