Two- and Three-Dimensional Smectic Ordering of Single-Handed Helical Polymers

Rodlike polymers with precisely defined architectures are ideal building blocks for self-assembled structures leading to novel nanometer-scale devices. We found that the living polymerization of a single isocyanide enantiomer bearing an l-alanine pendant with a long n-decyl chain simultaneously prod...

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Veröffentlicht in:Journal of the American Chemical Society 2008-01, Vol.130 (1), p.229-236
Hauptverfasser: Onouchi, Hisanari, Okoshi, Kento, Kajitani, Takashi, Sakurai, Shin-ichiro, Nagai, Kanji, Kumaki, Jiro, Onitsuka, Kiyotaka, Yashima, Eiji
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container_issue 1
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container_title Journal of the American Chemical Society
container_volume 130
creator Onouchi, Hisanari
Okoshi, Kento
Kajitani, Takashi
Sakurai, Shin-ichiro
Nagai, Kanji
Kumaki, Jiro
Onitsuka, Kiyotaka
Yashima, Eiji
description Rodlike polymers with precisely defined architectures are ideal building blocks for self-assembled structures leading to novel nanometer-scale devices. We found that the living polymerization of a single isocyanide enantiomer bearing an l-alanine pendant with a long n-decyl chain simultaneously produced diastereomeric right- and left-handed helices with different molecular weights and narrow molecular weight distributions. Each single-handed, rodlike helical polymer with a controlled length and handedness isolated by a facile solvent fractionation method with acetone self-assembled to form well-defined two- and three-dimensional smectic ordering on the nanometer scale on a substrate and in a liquid crystalline state as evidenced by direct atomic force microscopic observations and X-ray diffraction measurements, respectively.
doi_str_mv 10.1021/ja074627u
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subjects Alanine - chemistry
Alkanes - chemistry
Cyanides - chemistry
Liquid Crystals
Molecular Conformation
Nanostructures - chemistry
Polymers - chemical synthesis
Polymers - chemistry
title Two- and Three-Dimensional Smectic Ordering of Single-Handed Helical Polymers
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