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Acetamide, 2,2-dichloro-N-octyl-, also known as 2,2-dichloro-N-octylacetamide, is an organic compound with the chemical formula C10H20Cl2NO. It is a derivative of acetamide, featuring an octyl chain and two chlorine atoms attached to the carbon adjacent to the amide group. Acetamide, 2,2-dichloro-N-octyl- is characterized by its amphiphilic nature, with a hydrophilic amide group and a hydrophobic alkyl chain. It is used in various applications, including as a chemical intermediate, a surfactant, and in the formulation of certain types of products due to its unique properties. However, it is important to note that the use and handling of this chemical should be done with caution, as it may have potential health and environmental impacts, and specific safety measures should be followed.

5326-91-0

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5326-91-0 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 5326-91-0 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 5,3,2 and 6 respectively; the second part has 2 digits, 9 and 1 respectively.
Calculate Digit Verification of CAS Registry Number 5326-91:
(6*5)+(5*3)+(4*2)+(3*6)+(2*9)+(1*1)=90
90 % 10 = 0
So 5326-91-0 is a valid CAS Registry Number.

5326-91-0Downstream Products

5326-91-0Relevant academic research and scientific papers

Dichloromeldrum's acid (DiCMA): A practical and green amine dichloroacetylation reagent

Heard, David M.,Lennox, Alastair J.J.

supporting information, p. 3368 - 3372 (2021/05/06)

Dichloromeldrum's acid is introduced as a bench-stable, nonvolatile reagent for the dichloroacetylation of anilines and alkyl amines to produce α,α-dichloroacetamides, which are important motifs for medicinal chemistry. Products are formed in good to excellent yields with reagent grade solvents, and, as the only byproducts are acetone and CO2, no column chromatography is required. Thus, this reagent is practical, efficient, and green for the dichloroacetylation of primary amines.

Efficient partial hydrogenation of trichloromethyl to gem-dichloromethyl groups in platinum on carbon-catalyzed system

Sawama, Yoshinari,Imanishi, Takahiro,Nakatani, Ryosuke,Fujiwara, Yuta,Monguchi, Yasunari,Sajiki, Hironao

supporting information, p. 4540 - 4546 (2014/06/10)

While gem-dichloromethyl groups can be directly synthesized by the mono-dechlorination of the corresponding trichloromethyl groups, the suppression control of the over-reduction to form chloromethyl or methyl functionalities is quite difficult. We have established the efficient and widely applicable mono-dechlorination method of the trichloromethyl groups to form the corresponding gem-dichloromethyl groups using platinum on carbon in dimethylacetamide as a specific solvent at 25 °C under a hydrogen atmosphere. The mono-dechlorination of the α,α,α- trichloromethylcarbonyl groups smoothly proceeded by the use of platinum on carbon as a catalyst in a highly chemoselective manner, while the efficient mono-dechlorination of the alkyl- and aryl-trichloromethyl groups required the combined use of Bu3SnH.

Platinum on carbon-catalyzed precise reduction control of trichloromethyl to Geminal-dichloromethyl groups

Imanishi, Takahiro,Fujiwara, Yuta,Sawama, Yoshinari,Monguchi, Yasunari,Sajiki, Hironao

, p. 771 - 776 (2012/06/30)

Geminal-dichloromethyl derivatives could be efficiently synthesized by the highly chemoselective platinum on carbon-catalyzed mono-dechlorination of trichloromethyl substrates in dimethylacetamide (DMA) as a specific solvent at 25 °C under a hydrogen atmosphere. Copyright

One-pot conversion of t-butyl carbamates to amides with acyl halide-methanol mixtures

Nazih, Abdesslame,Heissler, Denis

, p. 203 - 206 (2007/10/03)

Acyl halide-methanol mixtures are efficient reagents for the one-pot transformation of t-butyl carbamates into amides. This transformation can be carried out in the presence of a benzyloxycarbonyl group.

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