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Structure

N-butyl,methylpyrrolidinium bromide

CAS
93457-69-3
Catalog Number
ACM93457693
Category
Pyrrolidinium Ionic Liquids
Molecular Weight
222.17
Molecular Formula
C9H20NBr
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Specification

Abbreviation
PP1,4Br
Chemical Formula
PP1,4Br
What is the molecular formula of N-butyl,methylpyrrolidinium bromide?

The molecular formula of N-butyl,methylpyrrolidinium bromide is C9H20BrN.

What are some synonyms for N-butyl,methylpyrrolidinium bromide?

Some synonyms for N-butyl,methylpyrrolidinium bromide are 1-Butyl-1-methylpyrrolidinium bromide, N-methyl-N-butylpyrrolidinium bromide, and N-butyl-N-methylpyrrolidinium bromide.

What is the molecular weight of N-butyl,methylpyrrolidinium bromide?

The molecular weight of N-butyl,methylpyrrolidinium bromide is 222.17 g/mol.

What is the IUPAC name of N-butyl,methylpyrrolidinium bromide?

The IUPAC name of N-butyl,methylpyrrolidinium bromide is 1-butyl-1-methylpyrrolidin-1-ium;bromide.

What is the InChIKey of N-butyl,methylpyrrolidinium bromide?

The InChIKey of N-butyl,methylpyrrolidinium bromide is LCZRPQGSMFXSTC-UHFFFAOYSA-M.

What is the Canonical SMILES for N-butyl,methylpyrrolidinium bromide?

The Canonical SMILES for N-butyl,methylpyrrolidinium bromide is CCCC[N+]1(CCCC1)C.[Br-].

What is the CAS number for N-butyl,methylpyrrolidinium bromide?

The CAS number for N-butyl,methylpyrrolidinium bromide is 93457-69-3.

How many hydrogen bond donor counts does N-butyl,methylpyrrolidinium bromide have?

N-butyl,methylpyrrolidinium bromide has 0 hydrogen bond donor counts.

How many hydrogen bond acceptor counts does N-butyl,methylpyrrolidinium bromide have?

N-butyl,methylpyrrolidinium bromide has 1 hydrogen bond acceptor count.

Is N-butyl,methylpyrrolidinium bromide a covalently-bonded unit?

Yes, N-butyl,methylpyrrolidinium bromide is a covalently-bonded unit.

Upstream Synthesis Route 1

  • 120-94-5
  • 109-65-9

Reference: [1]Gilbert, Alyssa; Haines, Ronald S.; Harper, Jason B.
[Organic and Biomolecular Chemistry, 2019, vol. 17, # 3, p. 675 - 682]

Downstream Synthesis Route 1

Reference: [1]Physical Chemistry Chemical Physics,2016,vol. 18,p. 11251 - 11262

* For details of the synthesis route, please refer to the original source to ensure accuracy.

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