Details:
Lauric acid Basic information |
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Lauric acid Chemical Properties |
mp |
44-46 °C(lit.) |
bp |
225 °C100 mm Hg(lit.) |
density |
0.883 g/mL at 25 °C(lit.) |
vapor pressure |
1 mm Hg ( 121 °C) |
FEMA |
2614 |
refractive index |
1.4304 |
Fp |
>230 °F |
Water Solubility |
insoluble |
Merck |
14,5384 |
BRN |
1099477 |
Stability: |
Stable. Combustible. Incompatible with bases, oxidizing agents, reducing agents. |
CAS DataBase Reference |
143-07-7(CAS DataBase Reference) |
NIST Chemistry Reference |
Dodecanoic acid(143-07-7) |
EPA Substance Registry System |
Dodecanoic acid(143-07-7) |
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Lauric acid Usage And Synthesis |
Chemical Properties |
white solid with a faint odour of bay oil |
Usage |
Intermediates of Liquid Crystals |
General Description |
White solid with a slight odor of bay oil. |
Air & Water Reactions |
Insoluble in water. |
Reactivity Profile |
Lauric acid is a carboxylic acid. Carboxylic acids donate hydrogen ions if a base is present to accept them. They react in this way with all bases, both organic (for example, the amines) and inorganic. Their reactions with bases, called "neutralizations", are accompanied by the evolution of substantial amounts of heat. Neutralization between an acid and a base produces water plus a salt. Carboxylic acids in aqueous solution and liquid or molten carboxylic acids can react with active metals to form gaseous hydrogen and a metal salt. Such reactions occur in principle for solid carboxylic acids as well, but are slow if the solid acid remains dry. Even "insoluble" carboxylic acids may absorb enough water from the air and dissolve sufficiently in Lauric acid to corrode or dissolve iron, steel, and aluminum parts and containers. Carboxylic acids, like other acids, react with cyanide salts to generate gaseous hydrogen cyanide. The reaction is slower for dry, solid carboxylic acids. Insoluble carboxylic acids react with solutions of cyanides to cause the release of gaseous hydrogen cyanide. Flammable and/or toxic gases and heat are generated by the reaction of carboxylic acids with diazo compounds, dithiocarbamates, isocyanates, mercaptans, nitrides, and sulfides. Carboxylic acids, especially in aqueous solution, also react with sulfites, nitrites, thiosulfates (to give H2S and SO3), dithionites (SO2), to generate flammable and/or toxic gases and heat. Their reaction with carbonates and bicarbonates generates a harmless gas (carbon dioxide) but still heat. Like other organic compounds, carboxylic acids can be oxidized by strong oxidizing agents and reduced by strong reducing agents. These reactions generate heat. A wide variety of products is possible. Like other acids, carboxylic acids may initiate polymerization reactions; like other acids, they often catalyze (increase the rate of) chemical reactions. Lauric acid can react with oxidizing materials. |
Health Hazard |
May be harmful by inhalation, ingestion or skin absorption. Vapor or mist is irritating to eyes, mucous membrane and upper respiratory tract. Causes eye and skin irritation. |
Fire Hazard |
Behavior in Fire: May cause dust explosion. |
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Lauric acid Preparation Products And Raw materials |
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