Limits of isomorphous substitution of molecules in normal paraffins as a function of temperature

Research output

6 Citations (Scopus)

Abstract

The limits of isomorphous substitutions and the symmetry of synthetic binary solid solutions of paraffins CnH2n+2 with n=17-24 have been studied by X-ray diffraction and thermal X-ray diffraction. Principles of isomorphous substitutions of paraffin molecules are suggested which take into consideration the length (n), the symmetry (parity of n), and the intensity of thermal rotational motion of component molecules.

Original languageEnglish
Pages (from-to)593-601
Number of pages9
JournalJournal of Structural Chemistry
Volume34
Issue number4
DOIs
Publication statusPublished - 1 Jul 1994

Fingerprint

paraffins
Paraffin
Paraffins
Substitution reactions
substitutes
X ray diffraction
Molecules
symmetry
diffraction
molecules
Solid solutions
parity
x rays
solid solutions
Temperature
temperature
Hot Temperature

Scopus subject areas

  • Physical and Theoretical Chemistry
  • Inorganic Chemistry

Cite this

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title = "Limits of isomorphous substitution of molecules in normal paraffins as a function of temperature",
abstract = "The limits of isomorphous substitutions and the symmetry of synthetic binary solid solutions of paraffins CnH2n+2 with n=17-24 have been studied by X-ray diffraction and thermal X-ray diffraction. Principles of isomorphous substitutions of paraffin molecules are suggested which take into consideration the length (n), the symmetry (parity of n), and the intensity of thermal rotational motion of component molecules.",
author = "Filatov, {S. K.} and Kotelnikova, {E. N.}",
year = "1994",
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number = "4",

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N2 - The limits of isomorphous substitutions and the symmetry of synthetic binary solid solutions of paraffins CnH2n+2 with n=17-24 have been studied by X-ray diffraction and thermal X-ray diffraction. Principles of isomorphous substitutions of paraffin molecules are suggested which take into consideration the length (n), the symmetry (parity of n), and the intensity of thermal rotational motion of component molecules.

AB - The limits of isomorphous substitutions and the symmetry of synthetic binary solid solutions of paraffins CnH2n+2 with n=17-24 have been studied by X-ray diffraction and thermal X-ray diffraction. Principles of isomorphous substitutions of paraffin molecules are suggested which take into consideration the length (n), the symmetry (parity of n), and the intensity of thermal rotational motion of component molecules.

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