螺旋感受受控合成光学活性聚甲基酸) 立体复合体
Takehiro Kawauchi1, Atsushi Kitaura, Jiro Kumaki
1Yashima Super-structured Helix Project, Exploratory Research for Advanced Technology, Japan Science & Technology Agency, Japan. kawauchi@tutms.tut.ac.jp
Journal of the American Chemical Society
|August 15, 2008
概括
通过将异形PMMA纳入富勒烯封装的同形PMMA螺旋体中,形成了光学活性聚甲基酸) 立体复合体. 这导致了三链螺旋,并保留了宏分子螺旋性记忆.
科学领域:
- 聚合物化学 聚合物化学
- 超分子化学 超分子化学
- 整形眼镜光谱法 整形眼镜光谱法
背景情况:
- 光学活性聚合物表现出独特的手术性质.
- 大分子螺旋性记忆允许聚合物保留特定的螺旋形状.
- 富勒烯封装可以模板聚合物结构.
研究的目的:
- 用于制备光学活性聚甲基酸的立体复合物.
- 为了研究螺旋感受控制的超分子纳入.
- 为了探索三链螺旋结构的形成.
主要方法:
- 合成光学活性,富勒烯封装的综合毒性PMMA.
- 在富勒烯-PMMA复合体内包含异性质PMMA的超分子含量.
- 分析使用振动圆形二极化 (VCD) 谱学.
- 对VCD频谱进行计算分析.
主要成果:
- 成功制备光学活性PMMA立体复合体.
- 隔离性PMMA替代了封装的富勒伦在综合性PMMA螺旋体内.
- 通过同位性PMMA形成双链螺旋体,与同位性PMMA单链螺旋体相同.
- 为拓学三链螺旋结构提供证据.
结论:
- 展示了一种创建有控制螺旋结构的立体复合体的新方法.
- 在三链PMMA螺旋中建立了宏分子螺旋性记忆效应.
- 突出了烯模板在指导聚合物自组装中的作用.
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