Isotropic cubic phase of 4-n-pentadecyloxy-3-nitrobiphenyl4-carboxylic acid (ANBC-15): DSC, microscopic and dynamic viscoelastic studies
The phase behaviour of 4-n-pentadecyloxy-3-nitrobiphenyl-4-carboxylic acid (ANBC-15) was investigated by differential scanning calorimetry, polarizing optical microscopy, and dynamic viscoelastic measurements. The phase sequence for the virgin sample of ANBC-15 is crystalsmectic C (SmC)-cubic (D)-sm...
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Veröffentlicht in: | Liquid crystals 1999-04, Vol.26 (4), p.567-573 |
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description | The phase behaviour of 4-n-pentadecyloxy-3-nitrobiphenyl-4-carboxylic acid (ANBC-15) was investigated by differential scanning calorimetry, polarizing optical microscopy, and dynamic viscoelastic measurements. The phase sequence for the virgin sample of ANBC-15 is crystalsmectic C (SmC)-cubic (D)-smectic A (SmA)-'structured liquid' (I1)-isotropic liquid (I2) on first heating. It was found that the appearance of the D phase on the second heating depends on the top temperature of the first heating. It was also shown that the D phase is formed on heating when the preceding SmC phase is 'solid-like' from the viscoelastic point of view, i.e. storage modulus (G) loss modulus (G) at 62.8 rad sec -1, while the 'liquid-like' SmC phase is transformed directly into the SmA phase without showing the D phase on heating. The isothermal frequency scans at a temperature in the D phase showed the existence of a cross-over point, G G, with G G in the lower frequency side, suggesting a structural fluctuation of the D phase. These results are ascribed to the molecular structure of ANBC-15, which has a critical alkoxy chain length in ANBC series. |
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The phase sequence for the virgin sample of ANBC-15 is crystalsmectic C (SmC)-cubic (D)-smectic A (SmA)-'structured liquid' (I1)-isotropic liquid (I2) on first heating. It was found that the appearance of the D phase on the second heating depends on the top temperature of the first heating. It was also shown that the D phase is formed on heating when the preceding SmC phase is 'solid-like' from the viscoelastic point of view, i.e. storage modulus (G) loss modulus (G) at 62.8 rad sec -1, while the 'liquid-like' SmC phase is transformed directly into the SmA phase without showing the D phase on heating. The isothermal frequency scans at a temperature in the D phase showed the existence of a cross-over point, G G, with G G in the lower frequency side, suggesting a structural fluctuation of the D phase. 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The phase sequence for the virgin sample of ANBC-15 is crystalsmectic C (SmC)-cubic (D)-smectic A (SmA)-'structured liquid' (I1)-isotropic liquid (I2) on first heating. It was found that the appearance of the D phase on the second heating depends on the top temperature of the first heating. It was also shown that the D phase is formed on heating when the preceding SmC phase is 'solid-like' from the viscoelastic point of view, i.e. storage modulus (G) loss modulus (G) at 62.8 rad sec -1, while the 'liquid-like' SmC phase is transformed directly into the SmA phase without showing the D phase on heating. The isothermal frequency scans at a temperature in the D phase showed the existence of a cross-over point, G G, with G G in the lower frequency side, suggesting a structural fluctuation of the D phase. 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The phase sequence for the virgin sample of ANBC-15 is crystalsmectic C (SmC)-cubic (D)-smectic A (SmA)-'structured liquid' (I1)-isotropic liquid (I2) on first heating. It was found that the appearance of the D phase on the second heating depends on the top temperature of the first heating. It was also shown that the D phase is formed on heating when the preceding SmC phase is 'solid-like' from the viscoelastic point of view, i.e. storage modulus (G) loss modulus (G) at 62.8 rad sec -1, while the 'liquid-like' SmC phase is transformed directly into the SmA phase without showing the D phase on heating. The isothermal frequency scans at a temperature in the D phase showed the existence of a cross-over point, G G, with G G in the lower frequency side, suggesting a structural fluctuation of the D phase. These results are ascribed to the molecular structure of ANBC-15, which has a critical alkoxy chain length in ANBC series.</abstract><pub>Taylor & Francis Group</pub><doi>10.1080/026782999205010</doi><tpages>7</tpages></addata></record> |
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title | Isotropic cubic phase of 4-n-pentadecyloxy-3-nitrobiphenyl4-carboxylic acid (ANBC-15): DSC, microscopic and dynamic viscoelastic studies |
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