
Dodecyloxypropyl amine
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Category:Paint chemicals Own Brand:MT /MOQ:100KG /From China/ B2B only.
Introduction
CAS No. 151789-06-9
Content 95%
Packing 160kg/drum 800kg/IBC
Names and Identifiers
| Name | Isododecyloxypropyl amine |
| Synonyms | Isododecyloxypropyl amine 1-Propanamine, 3-(C11-14-isoalkyloxy) derivs., C13-rich |
| CAS | 151789-06-9 |
151789-06-9 – Physico-chemical Properties
| Molecular Formula | C15H33NO |
| Molar Mass | 243.42862 |
151789-06-9 – Introduction
3-isododecyloxypropylamine, also known as DIPA(Diisotridecylamine oxide), is a surfactant with high surface active ability. The following is information on the nature, use and preparation of the substance:
Nature:
-Appearance: 3-isododecyloxypropylamine is a colorless to slightly yellow liquid.
-Solubility: It is soluble in water, alcohols and organic solvents.
-Surface active ability: 3-isododecyloxypropylamine has good surface active ability, which can reduce the surface tension of the liquid and form a stable emulsion system between water and oil.
-Stability: It has good stability under acid, alkali and high salinity conditions.
Use:
-Surfactant: 3-isododecoxypropylamine is widely used in the manufacture of various surfactants in industry, such as detergents, detergents, lubricants, etc.
-Emulsifier: Due to its good emulsifying properties, 3-isododecoxypropylamine is often used as an emulsifier for emulsifying liquid and solid mixtures, such as emulsions, pigment emulsions, etc.
-Antistatic agent: It can also be used as an antistatic agent to reduce static electricity accumulation and is used in the electronics, textile, printing and plastics industries.
-Temperature resistant additives: 3-isododecyloxy propylamine also has good temperature resistance, so it is widely used in lubricating oil, metal cutting fluid and grease and other products under high temperature environment.
Preparation Method:
3-isododecyloxypropylamine is generally prepared by reacting dodecyloxypropylamine with sulfur dioxide. First, dodecyloxypropylamine is heated to react with excess sulfur dioxide, and the oxidation reaction is carried out at a higher temperature to produce 3-isododecyloxypropylamine and sulfide. The 3-isododecyloxypropylamine is then purified by distillation or the like to obtain the desired product.
It should be noted that due to the preparation and application of chemicals, the actual preparation method and specific use may be different. It is recommended to pay attention to safety in laboratory or industrial production, follow the relevant preparation and use procedures.
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