109-78-4

  • Product Name:3-Hydroxypropanenitrile
  • Molecular Formula:C3H5NO
  • Molecular Weight:71.0788
  • Appearance:Colourless or straw-coloured liquid
Inquiry

Product Details

pd_meltingpoint:-46 °C

Appearance:Colourless or straw-coloured liquid

Purity:99%

Chinese Manufacturer supply 3-Hydroxypropanenitrile 109-78-4 in stock with high standard

  • Molecular Formula:C3H5NO
  • Molecular Weight:71.0788
  • Appearance/Colour:Colourless or straw-coloured liquid 
  • Vapor Pressure:0.0132mmHg at 25°C 
  • Melting Point:-46 °C 
  • Refractive Index:n20/D 1.425(lit.)  
  • Boiling Point:229.6 °C at 760 mmHg 
  • Flash Point:92.7 °C 
  • PSA:44.02000 
  • Density:1.04 g/cm3 
  • LogP:-0.10762 

3-Hydroxypropanenitrile(Cas 109-78-4) Usage

General Description

3-Hydroxypropanenitrile, also known as beta-hydroxypropionitrile, is a chemical compound with the molecular formula C3H5NO. It is an organic compound that contains a hydroxyl group and a nitrile group. 3-Hydroxypropanenitrile is a colorless liquid with a pungent odor and is soluble in water. It is primarily used in the production of chemicals and pharmaceuticals, and as a precursor for the synthesis of various organic compounds. It is also commonly used as a building block in the synthesis of polymers and other complex molecules. Additionally, 3-Hydroxypropanenitrile has been studied for its potential use in the development of new drugs and pharmaceuticals due to its unique chemical properties.

InChI:InChI=1/C3H5NO/c4-2-1-3-5/h5H,1,3H2

109-78-4 Relevant articles

Liquid-Phase Hydration of Acrylonitrile to Acetamide over the Copper-Nickel Alloy Catalysts

Sugiyama, Kazuo,Miura, Hiroshi,Watanabe, Yoshichika,Ukai, Yasunori

, p. 1579 - 1584 (1987)

The liquid-phase hydration of acrylonitr...

Kinetics and Mechanism of Nitrile Hydration Catalized by Unhindered Hydridobis(phosphine)platinum(II) Complexes. Regioselective Hydration of Acrylonitrile

Jensen, Craig M.,Trogler, William C.

, p. 723 - 729 (1986)

The reaction between trans-PtHCl(PR3)2 (...

SELECTIVE HYDRATION OF ACRYLONITRILE ON METAL OXIDE CATALYSTS

Miura, Hiroshi,Sugiyama, Kazuo,Kawakami, Soichiro,Aoyama, Toshiyuki,Matsuda, Tsuneo

, p. 183 - 186 (1982)

The selective hydration of acrylonitrile...

Development of 3-methoxy-4-benzyloxybenzyl alcohol (MBBA) resin as polymer-supported synthesis support: Preparation and benzyl ether cleavage by DDQ oxidation

Huang, Qiang,Zheng, Bao-Zhong,Long, Quan

, p. 203 - 207 (2010)

3-Methoxy-4-benzyloxybenzyl alcohol (MBB...

Preparation method of 3-aminopropanol

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Paragraph 0064; 0065, (2020/05/05)

The invention relates to a preparation m...

Method used for producing 3-hydroxypropionic acid

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Paragraph 0037; 0045-0047, (2019/12/08)

The invention belongs to the technical f...

Method for catalytically synthesizing 3-hydroxylpropionitrile from hydrocyanic acid and epoxyethane

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Paragraph 0030; 0031; 0032; 0033; 0034; 0035; 0036-0048, (2017/07/20)

The invention relates to a method for ca...

Efficient and rapid synthesis of phenolic analogs of 4-phenylbutanoic acid using microwave-assisted Michael addition as a key reaction

Iida, Hirokazu,Akatsu, Yusuke,Mizukami, Kazushi,Natori, Sho,Matsukawa, Minako,Takahashi, Kie

supporting information, p. 581 - 585 (2016/07/06)

ABSTRACT: The addition of phenols to acr...

109-78-4 Process route

3-Hydroxypropionitrile
109-78-4

3-Hydroxypropionitrile

3-dimethylaminopropiononitrile
1738-25-6

3-dimethylaminopropiononitrile

Conditions
Conditions Yield
acrylonitrile
107-13-1,25014-41-9

acrylonitrile

2-cyanoethyl ether
1656-48-0

2-cyanoethyl ether

2-propenamide
79-06-1,12624-24-7,25038-45-3,27754-57-0,33338-03-3,39387-77-4,68247-81-4,9082-06-8,79079-15-5

2-propenamide

3-Hydroxypropionitrile
109-78-4

3-Hydroxypropionitrile

Conditions
Conditions Yield
trans-; at 80 ℃; Mechanism; Rate constant; Product distribution; in the absence or in the presence of different quantity of water;
trans-; at 25 ℃; Rate constant; Product distribution; also in the presence of different quantity of acetamide;
sodium hydroxide; In water; at 80 ℃; Product distribution;

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