Structure

3,5-diethyl-2-methylpyrazine

CAS
18138-05-1
Catalog Number
ACM18138051
Category
Pyrazines
Molecular Weight
150.2
Molecular Formula
C9H14N2

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Specification

Appearance
Light Yellow Oil
What is the molecular formula of 3,5-diethyl-2-methylpyrazine?

The molecular formula of 3,5-diethyl-2-methylpyrazine is C9H14N2.

How is 3,5-diethyl-2-methylpyrazine described in terms of its chemical structure?

3,5-diethyl-2-methylpyrazine is described as a member of pyrazines.

What is the molecular weight of 3,5-diethyl-2-methylpyrazine?

The molecular weight of 3,5-diethyl-2-methylpyrazine is 150.22 g/mol.

What is the IUPAC name of 3,5-diethyl-2-methylpyrazine?

The IUPAC name of 3,5-diethyl-2-methylpyrazine is 3,5-diethyl-2-methylpyrazine.

What is the InChI of 3,5-diethyl-2-methylpyrazine?

The InChI of 3,5-diethyl-2-methylpyrazine is InChI=1S/C9H14N2/c1-4-8-6-10-7(3)9(5-2)11-8/h6H,4-5H2,1-3H3.

How many hydrogen bond acceptors does 3,5-diethyl-2-methylpyrazine have?

3,5-diethyl-2-methylpyrazine has 2 hydrogen bond acceptors.

What is the exact mass of 3,5-diethyl-2-methylpyrazine?

The exact mass of 3,5-diethyl-2-methylpyrazine is 150.115698455 g/mol.

How many rotatable bonds does 3,5-diethyl-2-methylpyrazine have?

3,5-diethyl-2-methylpyrazine has 2 rotatable bonds.

What is the topological polar surface area of 3,5-diethyl-2-methylpyrazine?

The topological polar surface area of 3,5-diethyl-2-methylpyrazine is 25.8 Ų.

Does 3,5-diethyl-2-methylpyrazine have any defined atom stereocenter count?

No, 3,5-diethyl-2-methylpyrazine does not have any defined atom stereocenter count.

Upstream Synthesis Route 1

  • 56-45-1
  • 50-81-7
  • 109-08-0
  • 123-32-0
  • 13925-00-3
  • 13238-84-1
  • 13360-65-1
  • 96-76-4
  • 13925-03-6
  • 18138-05-1
  • 13360-64-0
  • 21835-01-8

Reference: [1] Food Chemistry, 2010, vol. 119, # 1, p. 214 - 219

Upstream Synthesis Route 2

  • 72-19-5
  • 50-81-7
  • 123-32-0
  • 13925-00-3
  • 13238-84-1
  • 13360-65-1
  • 13925-03-6
  • 18138-05-1
  • 13360-64-0
  • 15707-34-3
  • 15707-23-0

Reference: [1] Food Chemistry, 2010, vol. 119, # 1, p. 214 - 219

Upstream Synthesis Route 3

  • 72-19-5
  • 50-81-7
  • 13925-00-3
  • 13238-84-1
  • 13360-65-1
  • 1115-11-3
  • 13925-03-6
  • 18138-05-1
  • 13360-64-0
  • 15707-34-3
  • 15707-23-0
  • 18138-04-0

Reference: [1] Food Chemistry, 2010, vol. 119, # 1, p. 214 - 219

Upstream Synthesis Route 4

  • 50-00-0
  • 5077-67-8
  • 18138-05-1

Reference: [1]Food Chemistry,2010,vol. 122,p. 753 - 760

Upstream Synthesis Route 5

  • 56-45-1
  • 50-81-7
  • 109-08-0
  • 123-32-0
  • 13925-00-3
  • 13238-84-1
  • 13360-65-1
  • 96-76-4
  • 13925-03-6
  • 18138-05-1
  • 13360-64-0
  • 21835-01-8

Reference: [1]Food Chemistry,2010,vol. 119,p. 214 - 219

Upstream Synthesis Route 6

  • 72-19-5
  • 50-81-7
  • 98-01-1
  • 109-08-0
  • 123-32-0
  • 823-82-5
  • 13360-65-1
  • 1197-40-6
  • 96-76-4
  • 18138-05-1
  • 13360-64-0
  • 21835-01-8

Reference: [1]Location in patent: experimental part
Yu, Ai-Nong; Zhang, Ai-Dong
[Food Chemistry, 2010, vol. 119, # 1, p. 214 - 219]

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