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Thermal and Structural Study of the Crystal Phases and Mesophases in the Lithium and Thallium(I) Propanoates and Pentanoates Binary Systems: Formation of Mixed Salts and Stabilization of the Ionic Liquid Crystal Phase
The temperature and enthalpy vs composition phase diagrams of the binary systems [xC2H5CO2Li + (1 − x)C2H5CO2Tl], and [x(n-C4H9CO2Li) + (1 − x)n-C4H9CO2Tl], where x is the mole fraction, were determined by DSC. Both binary systems display the formation of one 2:1 mixed salt each (at x = 0.667) that...
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Published in: | The journal of physical chemistry. B 2010-08, Vol.114 (31), p.10075-10085 |
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container_title | The journal of physical chemistry. B |
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creator | Martínez Casado, F. J Ramos Riesco, M da Silva, I Labrador, A Redondo, M. I García Pérez, M. V López-Andrés, S Rodríguez Cheda, J. A |
description | The temperature and enthalpy vs composition phase diagrams of the binary systems [xC2H5CO2Li + (1 − x)C2H5CO2Tl], and [x(n-C4H9CO2Li) + (1 − x)n-C4H9CO2Tl], where x is the mole fraction, were determined by DSC. Both binary systems display the formation of one 2:1 mixed salt each (at x = 0.667) that appear as a peritectic (incongruent melting) at T fus = 512.0 K, and T fus = 461.1 K, with Δfus H m = 13.76 and 8.08 kJ·mol−1 for Li−Tl (I) propanoates, and n-pentanoate mixed salts, respectively. The thermotropic liquid crystal of the thallium(I) n-pentanoate transforms into a more stable liquid-crystal phase, which appears in the phase diagram between 380 and 488 K and for x = 0 up to x = 0.56. The crystal structure of thallium(I) propanoate and of the two mixed salts were obtained via X-ray synchrotron radiation diffraction measurements. These compounds present a bilayered structure similar to the two pure lithium salts previously found by our group. |
doi_str_mv | 10.1021/jp1031702 |
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The thermotropic liquid crystal of the thallium(I) n-pentanoate transforms into a more stable liquid-crystal phase, which appears in the phase diagram between 380 and 488 K and for x = 0 up to x = 0.56. The crystal structure of thallium(I) propanoate and of the two mixed salts were obtained via X-ray synchrotron radiation diffraction measurements. These compounds present a bilayered structure similar to the two pure lithium salts previously found by our group.</description><identifier>ISSN: 1520-6106</identifier><identifier>EISSN: 1520-5207</identifier><identifier>DOI: 10.1021/jp1031702</identifier><identifier>PMID: 20684631</identifier><language>eng</language><publisher>United States: American Chemical Society</publisher><subject>B: Surfactants, Membranes</subject><ispartof>The journal of physical chemistry. 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Both binary systems display the formation of one 2:1 mixed salt each (at x = 0.667) that appear as a peritectic (incongruent melting) at T fus = 512.0 K, and T fus = 461.1 K, with Δfus H m = 13.76 and 8.08 kJ·mol−1 for Li−Tl (I) propanoates, and n-pentanoate mixed salts, respectively. The thermotropic liquid crystal of the thallium(I) n-pentanoate transforms into a more stable liquid-crystal phase, which appears in the phase diagram between 380 and 488 K and for x = 0 up to x = 0.56. The crystal structure of thallium(I) propanoate and of the two mixed salts were obtained via X-ray synchrotron radiation diffraction measurements. 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title | Thermal and Structural Study of the Crystal Phases and Mesophases in the Lithium and Thallium(I) Propanoates and Pentanoates Binary Systems: Formation of Mixed Salts and Stabilization of the Ionic Liquid Crystal Phase |
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