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Liquid-crystalline Janus-type fullerodendrimers displaying tunable smectic-columnar mesomorphism. / Lenoble, Julie; Campidelli, Stéphane; Maringa, Natacha; Donnio, Bertrand; Guillon, Daniel; Yevlampieva, Natalia; Deschenaux, Robert.

в: Journal of the American Chemical Society, Том 129, № 32, 15.08.2007, стр. 9941-9952.

Результаты исследований: Научные публикации в периодических изданияхстатьяРецензирование

Harvard

Lenoble, J, Campidelli, S, Maringa, N, Donnio, B, Guillon, D, Yevlampieva, N & Deschenaux, R 2007, 'Liquid-crystalline Janus-type fullerodendrimers displaying tunable smectic-columnar mesomorphism', Journal of the American Chemical Society, Том. 129, № 32, стр. 9941-9952. https://doi.org/10.1021/ja071012o

APA

Lenoble, J., Campidelli, S., Maringa, N., Donnio, B., Guillon, D., Yevlampieva, N., & Deschenaux, R. (2007). Liquid-crystalline Janus-type fullerodendrimers displaying tunable smectic-columnar mesomorphism. Journal of the American Chemical Society, 129(32), 9941-9952. https://doi.org/10.1021/ja071012o

Vancouver

Lenoble J, Campidelli S, Maringa N, Donnio B, Guillon D, Yevlampieva N и пр. Liquid-crystalline Janus-type fullerodendrimers displaying tunable smectic-columnar mesomorphism. Journal of the American Chemical Society. 2007 Авг. 15;129(32):9941-9952. https://doi.org/10.1021/ja071012o

Author

Lenoble, Julie ; Campidelli, Stéphane ; Maringa, Natacha ; Donnio, Bertrand ; Guillon, Daniel ; Yevlampieva, Natalia ; Deschenaux, Robert. / Liquid-crystalline Janus-type fullerodendrimers displaying tunable smectic-columnar mesomorphism. в: Journal of the American Chemical Society. 2007 ; Том 129, № 32. стр. 9941-9952.

BibTeX

@article{2a223fc391f843c4ae0e55a2fc5857ae,
title = "Liquid-crystalline Janus-type fullerodendrimers displaying tunable smectic-columnar mesomorphism",
abstract = "Janus-type liquid-crystalline fullerodendrimers were synthesized via the 1,3-dipolar cycloaddtition of two mesomorphic dendrons and C60. By assembling poly(aryl ester) dendrons functionalized with cyanobiphenyl groups, displaying lamellar mesomorphism, with poly(benzyl ether) dendrons carrying alkyl chains, which display columnar mesomorphism, we could tailor by design the liquid-crystalline properties of the title compounds as a function of each dendron size. The liquid-crystalline properties were examined by polarized optical microscopy, differential scanning calorimetry, and X-ray diffraction. Depending on the dendrimer generations, smectic (SmC and/or SmA phases) or columnar (Colr-c2mm or Colr-p2gg phases) mesomorphism was obtained. The supramolecular organization is governed by (1) the adequacy of the cross-sectional area of the dendrons, (2) the microsegregation of the dendrimer, (3) the deformation of the dendritic core, and (4) the dipolar interactions between the cyanobiphenyl groups. Comparison of the mesomorphic properties of two fullerodendrimers with those of model compounds (fullerene-free analogues) indicated that the C60 unit does not influence the type of mesophase that is formed. Molecular properties determined in solution (permanent dipole moment, specific dielectric polarization, molar Kerr constant) confirm that microsegregation persists in solution and strengthen the models proposed for the structure of the mesophases.",
author = "Julie Lenoble and St{\'e}phane Campidelli and Natacha Maringa and Bertrand Donnio and Daniel Guillon and Natalia Yevlampieva and Robert Deschenaux",
year = "2007",
month = aug,
day = "15",
doi = "10.1021/ja071012o",
language = "English",
volume = "129",
pages = "9941--9952",
journal = "Journal of the American Chemical Society",
issn = "0002-7863",
publisher = "American Chemical Society",
number = "32",

}

RIS

TY - JOUR

T1 - Liquid-crystalline Janus-type fullerodendrimers displaying tunable smectic-columnar mesomorphism

AU - Lenoble, Julie

AU - Campidelli, Stéphane

AU - Maringa, Natacha

AU - Donnio, Bertrand

AU - Guillon, Daniel

AU - Yevlampieva, Natalia

AU - Deschenaux, Robert

PY - 2007/8/15

Y1 - 2007/8/15

N2 - Janus-type liquid-crystalline fullerodendrimers were synthesized via the 1,3-dipolar cycloaddtition of two mesomorphic dendrons and C60. By assembling poly(aryl ester) dendrons functionalized with cyanobiphenyl groups, displaying lamellar mesomorphism, with poly(benzyl ether) dendrons carrying alkyl chains, which display columnar mesomorphism, we could tailor by design the liquid-crystalline properties of the title compounds as a function of each dendron size. The liquid-crystalline properties were examined by polarized optical microscopy, differential scanning calorimetry, and X-ray diffraction. Depending on the dendrimer generations, smectic (SmC and/or SmA phases) or columnar (Colr-c2mm or Colr-p2gg phases) mesomorphism was obtained. The supramolecular organization is governed by (1) the adequacy of the cross-sectional area of the dendrons, (2) the microsegregation of the dendrimer, (3) the deformation of the dendritic core, and (4) the dipolar interactions between the cyanobiphenyl groups. Comparison of the mesomorphic properties of two fullerodendrimers with those of model compounds (fullerene-free analogues) indicated that the C60 unit does not influence the type of mesophase that is formed. Molecular properties determined in solution (permanent dipole moment, specific dielectric polarization, molar Kerr constant) confirm that microsegregation persists in solution and strengthen the models proposed for the structure of the mesophases.

AB - Janus-type liquid-crystalline fullerodendrimers were synthesized via the 1,3-dipolar cycloaddtition of two mesomorphic dendrons and C60. By assembling poly(aryl ester) dendrons functionalized with cyanobiphenyl groups, displaying lamellar mesomorphism, with poly(benzyl ether) dendrons carrying alkyl chains, which display columnar mesomorphism, we could tailor by design the liquid-crystalline properties of the title compounds as a function of each dendron size. The liquid-crystalline properties were examined by polarized optical microscopy, differential scanning calorimetry, and X-ray diffraction. Depending on the dendrimer generations, smectic (SmC and/or SmA phases) or columnar (Colr-c2mm or Colr-p2gg phases) mesomorphism was obtained. The supramolecular organization is governed by (1) the adequacy of the cross-sectional area of the dendrons, (2) the microsegregation of the dendrimer, (3) the deformation of the dendritic core, and (4) the dipolar interactions between the cyanobiphenyl groups. Comparison of the mesomorphic properties of two fullerodendrimers with those of model compounds (fullerene-free analogues) indicated that the C60 unit does not influence the type of mesophase that is formed. Molecular properties determined in solution (permanent dipole moment, specific dielectric polarization, molar Kerr constant) confirm that microsegregation persists in solution and strengthen the models proposed for the structure of the mesophases.

UR - http://www.scopus.com/inward/record.url?scp=34547919581&partnerID=8YFLogxK

U2 - 10.1021/ja071012o

DO - 10.1021/ja071012o

M3 - Article

AN - SCOPUS:34547919581

VL - 129

SP - 9941

EP - 9952

JO - Journal of the American Chemical Society

JF - Journal of the American Chemical Society

SN - 0002-7863

IS - 32

ER -

ID: 37392732