Bimolecular rate constants for diffusion involving neutral reactants in ionic liquids

I.R. Dunkin

Research output: Contribution to journalArticle

110 Citations (Scopus)

Abstract

The temperature dependence of the bimolecular rate constants for a diffusion controlled reaction involving neutral reactants have been directly determined in five commonly used ionic liquids over the temperature range 5–70 °C.
LanguageEnglish
Pages1880-1881
Number of pages2
JournalChemical Communications (London)
Issue number17
DOIs
Publication statusPublished - 2002

Fingerprint

Ionic Liquids
Rate constants
Temperature

Keywords

  • diffusion
  • ionic liquids
  • neutral reactants
  • bimolecular rate

Cite this

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abstract = "The temperature dependence of the bimolecular rate constants for a diffusion controlled reaction involving neutral reactants have been directly determined in five commonly used ionic liquids over the temperature range 5–70 °C.",
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author = "I.R. Dunkin",
year = "2002",
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journal = "Chemical Communications (London)",
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Bimolecular rate constants for diffusion involving neutral reactants in ionic liquids. / Dunkin, I.R.

In: Chemical Communications (London), No. 17, 2002, p. 1880-1881.

Research output: Contribution to journalArticle

TY - JOUR

T1 - Bimolecular rate constants for diffusion involving neutral reactants in ionic liquids

AU - Dunkin, I.R.

PY - 2002

Y1 - 2002

N2 - The temperature dependence of the bimolecular rate constants for a diffusion controlled reaction involving neutral reactants have been directly determined in five commonly used ionic liquids over the temperature range 5–70 °C.

AB - The temperature dependence of the bimolecular rate constants for a diffusion controlled reaction involving neutral reactants have been directly determined in five commonly used ionic liquids over the temperature range 5–70 °C.

KW - diffusion

KW - ionic liquids

KW - neutral reactants

KW - bimolecular rate

U2 - 10.1039/B202944H

DO - 10.1039/B202944H

M3 - Article

SP - 1880

EP - 1881

JO - Chemical Communications (London)

T2 - Chemical Communications (London)

JF - Chemical Communications (London)

SN - 0009-241X

IS - 17

ER -