Suppr超能文献

在没有特定单体-单体相互作用的合成聚合物多链螺旋中进行分子量识别。

Molecular weight recognition in the multiple-stranded helix of a synthetic polymer without specific monomer-monomer interaction.

作者信息

Kumaki Jiro, Kawauchi Takehiro, Ute Koichi, Kitayama Tatsuki, Yashima Eiji

机构信息

Japan Science and Technology Agency (JST), Department of Chemical Science and Technology, Faculty and School of Engineering, Japan.

出版信息

J Am Chem Soc. 2008 May 21;130(20):6373-80. doi: 10.1021/ja077861t. Epub 2008 Apr 30.

Abstract

Stereoregular isotactic and syndiotactic poly(methyl methacrylate)s (it- and st-PMMAs) are known to form a multiple-stranded complementary helix, so-called stereocomplex (SC) through van der Waals interactions, which is a rare example of helical supramolecular structures formed by a commodity polymer. In this study, we prepared SCs by using uniform it- and st-PMMAs and those with a narrow molecular weight distribution having different molecular weights and investigated their structures in detail using high-resolution atomic force microscopy as a function of the molecular weight and molecular weight distribution of the component PMMAs. We found that complementary it- and st-PMMAs with the longer molecular length determine the total length of the SC, and molecules of the shorter component associate until they fill up or cover the longer component. These observations support a supramolecular triple-stranded helical structure of the SCs composed of a double-stranded helix of two intertwined it-PMMA chains included in a single helix of st-PMMA, and this triple-stranded helix model of the SCs appears to be applicable to the it- and st-PMMAs having a wide range of molecular weights we employed in this study. In homogeneous double-stranded helices of it-PMMA, it has been found that, in mixtures of two it-PMMAs with different molecular weights, chains of the same molecular weight selectively form a double-stranded it-PMMA helix, or recognize the molecular weights of each other ("molecular sorting"). We thus demonstrate that molecular weight recognition is possible, without any specific interaction between monomer units, through the formation of a topological multiple-stranded helical structure based upon van der Waals interaction.

摘要

全同立构和间同立构聚甲基丙烯酸甲酯(it-PMMA和st-PMMA)已知可通过范德华相互作用形成多链互补螺旋,即所谓的立体复合物(SC),这是由商品聚合物形成的螺旋超分子结构的罕见例子。在本研究中,我们使用均一的it-PMMA和st-PMMA以及具有不同分子量且分子量分布窄的样品制备了SC,并使用高分辨率原子力显微镜详细研究了它们的结构,作为组分PMMA分子量和分子量分布的函数。我们发现,分子长度较长的互补it-PMMA和st-PMMA决定了SC的总长度,较短组分的分子会缔合,直到填满或覆盖较长的组分。这些观察结果支持了SC的超分子三链螺旋结构,该结构由包含在st-PMMA单螺旋中的两条相互缠绕的it-PMMA链的双链螺旋组成,并且这种SC的三链螺旋模型似乎适用于我们在本研究中使用的具有广泛分子量范围的it-PMMA和st-PMMA。在it-PMMA的均相双链螺旋中,已发现,在两种不同分子量的it-PMMA混合物中,相同分子量的链选择性地形成双链it-PMMA螺旋,或相互识别分子量(“分子分选”)。因此,我们证明,通过基于范德华相互作用形成拓扑多链螺旋结构,在单体单元之间没有任何特异性相互作用的情况下,分子量识别是可能的。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验