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Temperature-influenced ordering of mesogens in comb-like liquid-crystalline poly(methylsiloxane) macromolecules with side groups consisting of "phenyl benzoate" moieties in solution. / Lavrenko, Peter; Yevlampieva, Natalia; Okatova, Olga; Kolbina, Galina; Olbrich, Michael.

In: Macromolecular Chemistry and Physics, Vol. 198, No. 11, 01.01.1997, p. 3581-3598.

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Lavrenko, Peter ; Yevlampieva, Natalia ; Okatova, Olga ; Kolbina, Galina ; Olbrich, Michael. / Temperature-influenced ordering of mesogens in comb-like liquid-crystalline poly(methylsiloxane) macromolecules with side groups consisting of "phenyl benzoate" moieties in solution. In: Macromolecular Chemistry and Physics. 1997 ; Vol. 198, No. 11. pp. 3581-3598.

BibTeX

@article{f18bc2f9e9ae4399b102457d28c8ef51,
title = "Temperature-influenced ordering of mesogens in comb-like liquid-crystalline poly(methylsiloxane) macromolecules with side groups consisting of {"}phenyl benzoate{"} moieties in solution",
abstract = "Comb-like poly(methylsiloxane) macromolecules P4, P6, and PII, with side groups consisting of {"}phenyl benzoate{"} moieties and different alkyl spacers (from 4 to 11 C-atoms) between the backbone and the mesogenic side groups have been synthesized and investigated as well as low-molar-mass compounds M4, M6, and M11, as model molecules analogous to side chains of the macromolecule. The liquid-crystalline phase transition temperatures have been determined. Mobility of the mesogens and the macromolecule as a whole in dilute solution was studied in external fields (electric and mechanical shear field). In dilute solution under the influence of a sinusoidal electric field, the polymer behaviour is typical of flexible-chain polymer molecules where each mesogenic unit is oriented independently of the other ones. This is in contrast to the effect observed in a mechanical shear flow field. The Maxwell constant is positive for the solutions of compounds M4, M6, M11 and negative in polymers P4, P6, P11. This indicates the orientation of the macromolecule as a whole in the shear flow field, the mesogenic group main axis being oriented in the direction preferably normal to the macromolecular axis of primary polarizability. Temperature effects are also discussed.",
author = "Peter Lavrenko and Natalia Yevlampieva and Olga Okatova and Galina Kolbina and Michael Olbrich",
year = "1997",
month = jan,
day = "1",
doi = "10.1002/macp.1997.021981121",
language = "English",
volume = "198",
pages = "3581--3598",
journal = "Macromolecular Chemistry and Physics",
issn = "1022-1352",
publisher = "Wiley-Blackwell",
number = "11",

}

RIS

TY - JOUR

T1 - Temperature-influenced ordering of mesogens in comb-like liquid-crystalline poly(methylsiloxane) macromolecules with side groups consisting of "phenyl benzoate" moieties in solution

AU - Lavrenko, Peter

AU - Yevlampieva, Natalia

AU - Okatova, Olga

AU - Kolbina, Galina

AU - Olbrich, Michael

PY - 1997/1/1

Y1 - 1997/1/1

N2 - Comb-like poly(methylsiloxane) macromolecules P4, P6, and PII, with side groups consisting of "phenyl benzoate" moieties and different alkyl spacers (from 4 to 11 C-atoms) between the backbone and the mesogenic side groups have been synthesized and investigated as well as low-molar-mass compounds M4, M6, and M11, as model molecules analogous to side chains of the macromolecule. The liquid-crystalline phase transition temperatures have been determined. Mobility of the mesogens and the macromolecule as a whole in dilute solution was studied in external fields (electric and mechanical shear field). In dilute solution under the influence of a sinusoidal electric field, the polymer behaviour is typical of flexible-chain polymer molecules where each mesogenic unit is oriented independently of the other ones. This is in contrast to the effect observed in a mechanical shear flow field. The Maxwell constant is positive for the solutions of compounds M4, M6, M11 and negative in polymers P4, P6, P11. This indicates the orientation of the macromolecule as a whole in the shear flow field, the mesogenic group main axis being oriented in the direction preferably normal to the macromolecular axis of primary polarizability. Temperature effects are also discussed.

AB - Comb-like poly(methylsiloxane) macromolecules P4, P6, and PII, with side groups consisting of "phenyl benzoate" moieties and different alkyl spacers (from 4 to 11 C-atoms) between the backbone and the mesogenic side groups have been synthesized and investigated as well as low-molar-mass compounds M4, M6, and M11, as model molecules analogous to side chains of the macromolecule. The liquid-crystalline phase transition temperatures have been determined. Mobility of the mesogens and the macromolecule as a whole in dilute solution was studied in external fields (electric and mechanical shear field). In dilute solution under the influence of a sinusoidal electric field, the polymer behaviour is typical of flexible-chain polymer molecules where each mesogenic unit is oriented independently of the other ones. This is in contrast to the effect observed in a mechanical shear flow field. The Maxwell constant is positive for the solutions of compounds M4, M6, M11 and negative in polymers P4, P6, P11. This indicates the orientation of the macromolecule as a whole in the shear flow field, the mesogenic group main axis being oriented in the direction preferably normal to the macromolecular axis of primary polarizability. Temperature effects are also discussed.

UR - http://www.scopus.com/inward/record.url?scp=0002067335&partnerID=8YFLogxK

U2 - 10.1002/macp.1997.021981121

DO - 10.1002/macp.1997.021981121

M3 - Article

AN - SCOPUS:0002067335

VL - 198

SP - 3581

EP - 3598

JO - Macromolecular Chemistry and Physics

JF - Macromolecular Chemistry and Physics

SN - 1022-1352

IS - 11

ER -

ID: 142923466