An X-Ray Study of the Stepwise Melting of Anhydrous Sodium Palmitate
- 1 March 1948
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 16 (3) , 175-180
- https://doi.org/10.1063/1.1746829
Abstract
X‐ray powder patterns on anhydrous sodium palmitate show that the five phases already known to occur between crystal and isotropic melt can be grouped into two basic structures. Both structures are liquid crystalline, i.e., crystalline in the direction of the long spacing and liquid‐like laterally. Between the lower temperature ``waxy'' structure, which includes the previously known subwaxy, waxy, and superwaxy phases, and the higher temperature ``neat'' structure, which includes subneat and neat, there is a pronounced break in the curve of long spacing vs. temperature; in addition, the three waxy phases exhibit two diffuse short spacing rings, whereas the neat phases exhibit only one. These pattern differences lead to the interpretation that the waxy phases contain structural restraints on molecular position and motion not present in the neat phases.Keywords
This publication has 8 references indexed in Scilit:
- Crystallization of Binary and Commercial Soap SystemsIndustrial & Engineering Chemistry, 1944
- X-Ray Diffraction Investigation of Sodium Stearate from Room Temperature to the Melting PointThe Journal of Chemical Physics, 1943
- Diffraction of X-rays by Sodium Laurate and Sodium Palmitate at Higher Temperatures.The Journal of Physical Chemistry, 1943
- Anhydrous Sodium Soaps. Heats of Transition and Classification of the Phases*Journal of the American Chemical Society, 1941
- Liquid Crystalline, Waxy, and Crystalline Phases in Binary Mixtures of Pure Anhydrous SoapsJournal of the American Chemical Society, 1941
- Successive Phases in the Transformation of Anhydrous Sodium Palmitate from Crystal to LiquidJournal of the American Chemical Society, 1939
- New allotropic forms of anhydrous sodium palmitateJournal of Oil & Fat Industries, 1939
- Crystalline phases of some substances studied as liquid crystalsTransactions of the Faraday Society, 1933