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ChemicalBook >> CAS DataBase List >>Lithium amide

Lithium amide

CAS No.
7782-89-0
Chemical Name:
Lithium amide
Synonyms
Aminolithium;Lithium amide (Li(NH2));lithamide;Lithioamine;Lithiumamid;Litium amide;ithium amide;LITHIUM AMIDE;lithium azanide;Lithiumamide,95%
CBNumber:
CB5854323
Molecular Formula:
H2LiN
Molecular Weight:
22.96
MDL Number:
MFCD00011093
MOL File:
7782-89-0.mol
MSDS File:
SDS
TDS File:
TDS
Last updated:2026-05-28 01:22:14
Product description Number Pack Size Price
Lithium amide powder, 95% 213217 5g $50.1
Lithium amide powder, 95% 213217 100g $87.1
Lithium amide, 95% 95% 93-0306 50g $55
Lithium amide, 95% 95% 93-0306 250g $223
Lithium amide ≥95% 27266 25KG $8824.22
More product size

Lithium amide Properties

Melting point 373 °C
Boiling point 430 °C
Density 1.178 g/mL at 25 °C(lit.)
refractive index 1.178g/mL
storage temp. water-free area
solubility Slightly soluble in ethanol and liquid ammonia. Insoluble in anhydrous ether, benzene and toluene.
form Powder
Specific Gravity 1.178
color off-white
Water Solubility reacts
Sensitive Air & Moisture Sensitive
Merck 14,5522
InChI 1S/Li.H2N/h;1H2/q+1;-1
InChIKey AFRJJFRNGGLMDW-UHFFFAOYSA-N
SMILES [Li].CN
LogP 0.23 at 25℃
CAS DataBase Reference 7782-89-0(CAS DataBase Reference)
FDA UNII 7393OMU9LK
EPA Substance Registry System Lithium amide (7782-89-0)
UNSPSC Code 26111700
NACRES NA.23

SAFETY

Risk and Safety Statements

Symbol(GHS)  Flame (GHS02)Corrosion (GHS05)
GHS02,GHS05
Signal word  Danger
Hazard statements  H251-H261-H314-H412
Precautionary statements  P235-P280-P223-P231+P232-P260-P264-P273-P370+P378-P301+P330+P331-P303+P361+P353-P363-P304+P340-P310-P305+P351+P338-P407-P420-P402+P404-P405-P501
PPE Eyeshields, Faceshields, Gloves, type P3 (EN 143) respirator cartridges
Hazard Codes  F,C
Risk Statements  14/15-29-34-20/21/22-15-14-11
Safety Statements  26-36/37/39-43-45-7/8-43B-16-3/7/9
RIDADR  UN 1390 4.3/PG 2
WGK Germany  2
RTECS  OJ5590000
TSCA  TSCA listed
HazardClass  4.3
PackingGroup  II
HS Code  28530090
Storage Class 4.3 - Hazardous materials which set free flammable gases upon contact with water
Hazard Classifications Skin Corr. 1B
Water-react 2
Hazardous Substances Data 7782-89-0(Hazardous Substances Data)
REACH Registrations Active
Limited Quantities 0.5 Kg (1.1 lbs) (solid)
Excepted Quantities Max Inner Pack (30g or 30ml) and Max Outer Pack (500g or 500ml)
NFPA 704
1
1 2
W

Lithium amide price More Price(13)

Manufacturer Product number Product description CAS number Packaging Price Updated Buy
Sigma-Aldrich 213217 Lithium amide powder, 95% 7782-89-0 5g $50.1 2026-04-30 Buy
Sigma-Aldrich 213217 Lithium amide powder, 95% 7782-89-0 100g $87.1 2026-04-30 Buy
Strem Chemicals 93-0306 Lithium amide, 95% 95% 7782-89-0 50g $55 2026-04-30 Buy
Strem Chemicals 93-0306 Lithium amide, 95% 95% 7782-89-0 250g $223 2026-04-30 Buy
Chem-Impex 27266 Lithium amide ≥95% 7782-89-0 25KG $8824.22 2026-05-19 Buy
Product number Packaging Price Buy
213217 5g $50.1 Buy
213217 100g $87.1 Buy
93-0306 50g $55 Buy
93-0306 250g $223 Buy
27266 25KG $8824.22 Buy

Lithium amide Chemical Properties,Uses,Production

Preparation

Lithium amide is obtained by dissolution of lithium metal in liquid ammonia. The reaction is slow, but may be catalyzed by cobalt nitrate:
2Li + 2NH3 → 2LiNH2 + H2
It also is obtained by passing gaseous ammonia over lithium hydride:
LiH + NH3 → LiNH2 + H2

Reactions

Lithium amide decomposes to imide when heated above 400°C: 2LiNH2 → Li2NH + NH3
It is used in several organic syntheses. Some of these synthetic reactions are based on the mechanism that the terminal alkynes react with the stronger base, the anion, forming the weaker conjugate base:
Reactions of 7782-89-0_1
It converts vic dibromide to bromoalkene and then alkyne:
Reactions of 7782-89-0_2
Reactions of 7782-89-0_3 Ketones can be converted into alkynes:Reactions of 7782-89-0_4

Chemical Properties

white to grey fine powder

Physical properties

Colorless needles; tetragonal structure; density 1.178 g/cm3 at 17.5°C; melts around 375°C; starts to decompose at 320°C; decomposes at 400°C; soluble in cold water; decomposes in hot water; slightly soluble in ethanol and liquid ammonia; insoluble in benzene and ether.

Uses

Reagent for synthesis of: Antiinflamatory and preoresolving protectin D11 Chemotype dipeptidyl peptidase IV inhibitors2 Sterically congested triarylamines3 Dyes displaying large Stokes shifts4 GM1 ganglioside derivatives5Reagent for cross-coupling of aryl chlorides and amines6

Uses

Lithium amide is used in the preparation of active pharmaceutical ingredients and antioxidants. It acts as a catalyst for polymers, as nucleophiles and as strong bases. It serves as a reagent in the synthesis of antiinflamatory and preoresolving protectin D1, chemotype dipeptidyl peptidase IV inhibitors and sterically congested triarylamines. It finds application in dyes displaying large stokes shifts. In addition to this, it is used as a reagent for cross-coupling of aryl chlorides and amine.

Uses

In Claisen condensations, alkylation of nitriles and ketones, synthesis of ethynyl Compounds, acetylenic carbinols.

Preparation

Lithium amide, LiNH2 , may be considered the ammonia analogue of lithium hydroxide in the water system. Lithium amide may be prepared from lithium hydride or lithium metal and ammonia. Industrial preparations use lithium hydride as a starting material.
The reaction of lithium metal in a stream of ammonia gas at about 400°C may be used successfully as a preparative method. Lithium may also be reacted with liquid ammonia in the presence of an iron compound as a catalyst.
Since amide ion is the strongest base which can exist in ammonia, lithium amide is a very strong base. The compound has a low solubility in liquid ammonia. Lithium amide is hydrolyzed by water to yield lithium hydroxide and ammonia. It is readily oxidized. For example, the substance may be oxidized with dinitrogen oxide to yield lithium azide. Amides of the alkali metals in general must be guarded against air oxidation to prevent the formation of potentially explosive substances.

General Description

White crystalline powder with an odor of ammonia. Denser than water.

Reactivity Profile

Powdered Lithium amide is highly reactive. A strong base. Reacts to release toxic ammonia gas with water. Forms explosive peroxide on storage.

Health Hazard

Highly toxic: contact with water produces toxic gas, may be fatal if inhaled. Inhalation or contact with vapors, substance or decomposition products may cause severe injury or death. May produce corrosive solutions on contact with water. Fire will produce irritating, corrosive and/or toxic gases. Runoff from fire control may cause pollution.

Fire Hazard

Produce flammable and toxic gases on contact with water. May ignite on contact with water or moist air. Some react vigorously or explosively on contact with water. May be ignited by heat, sparks or flames. May re-ignite after fire is extinguished. Some are transported in highly flammable liquids. Containers may explode when heated. Runoff may create fire or explosion hazard.

Flammability and Explosibility

Substances and mixtures which in contact with water emit flammable gases

Safety Profile

A powerful irritant to skin, eyes, and mucous membranes. Flammable when exposed to heat or flame. Ammonia is liberated and lithmm hydroxide is formed when this compound is exposed to moisture. Reacts violently with water or steam to produce toxic and flammable vapors. Vigorous reaction with oxilzing materials. Exothermic reaction with acid or acid fumes. When heated to decomposition it emits very toxic fumes of LiO, NH3, and NO,. Used in synthesis of drugs, vitamins, steroids, and other organics. See also LITHIUM COMPOUNDS, AMIDES, AMMONIA, and LITHIUM HYDROXIDE.

Purification Methods

Purify it by heating at 400o while NH3 is passed over it in the upper of two crucibles (the upper crucible is perforated). The LiNH2 will drip into the lower crucible through the holes in the upper crucible. The product is cooled in a stream of NH3. Protect it from air and moisture, store it under N2 in a clear glass bottle sealed with paraffin. Store it in small quantities so that all the material is used once the bottle is opened. If the colour of the amide is yellow, it should be destroyed as it is likely to have oxidised and to EXPLODE. On heating above 450o it is decomposed to Li2NH, which is stable up to 750-800o. [Schenk in Handbook of Preparative Inorganic Chemistry (Ed. Brauer) Academic Press Vol I p 463 1963, Greenlee & Henne Inorg Synth II 135 1953.]

Lithium amide Preparation Products And Raw materials

Global( 178)Suppliers
Supplier Tel Email Country ProdList Advantage
Henan Tianfu Chemical Co.,Ltd.
+86-0371-55170693 +86-19937530512 info@tianfuchem.com China 21531 55
career henan chemical co
+86-0371-86658258 sales@coreychem.com China 29766 58
CONIER CHEM AND PHARMA LIMITED
sales@conier.com China 49906 58
career henan chemical co
+86-0371-86658258 factory@coreychem.com China 29780 58
Antai Fine Chemical Technology Co.,Limited
18503026267 info@antaichem.com CHINA 9631 58
SIMAGCHEM CORP
+86-5922680277 +86-13806087780 sale@simagchem.com China 17339 58
Hefei TNJ Chemical Industry Co.,Ltd.
+86-0551-65418671 +86-189 4982 3763 sales@tnjchem.com China 34526 58
Dayang Chem (Hangzhou) Co.,Ltd.
+86-0571-88938639 17705817739 info@dycnchem.com China 52693 58
Zhuoer Chemical Co., Ltd
02120970332; sales@zhuoerchem.com China 2901 58
CD Chemical Group Limited
+86-13651442114 info@codchem.com China 17253 58

View Lastest Price from Lithium amide manufacturers

Image Update time Product Price Min. Order Purity Supply Ability Manufacturer
Lithium amide pictures 2020-01-13 Lithium amide
7882-89-0
$1.00 1KG 99% 100KG Career Henan Chemical Co
Lithium amide pictures 2019-07-06 Lithium amide
7782-89-0
$1.00 1G 98% 100KG Career Henan Chemical Co
Lithiumamid lithium azanide Lithioamine Litium amide LITHIUM AMIDE FOR SYNTHESIS lithamide LITHIUM AMIDE Lithiumamideoffwhitepowder LITHIUM AMIDE, HYDROGEN STORAGE GRADE LITHIUM AMIDE, POWDER, 95% Lithiumamide,95% ithium amide Lithium amide ISO 9001:2015 REACH Lithium amide 7782-89-0 Aminolithium Lithium amide (Li(NH2)) 7782-89-0 7882-89-0 H2LiN LiNH2 CH5LiN Synthetic Reagents Inorganic Bases New Products for Chemical Synthesis May/June 2007 metal amide Alternative Energy Amides Chemical Synthesis Inorganic Bases Materials for Hydrogen Storage Materials Science Synthetic Reagents Inorganics Organic Bases Alternative Energy AmidesChemical Synthesis Inorganic Bases Materials for Hydrogen Storage Synthetic Reagents
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