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1D vs. 2D shape selectivity in the crystallization-driven self-assembly of polylactide block copolymers

机译:聚酯嵌段共聚物结晶驱动自组装中的1D与2D形状选择性

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摘要

2D materials such as graphene, LAPONITE (R) clays or molybdenum disulfide nanosheets are of extremely high interest to the materials community as a result of their high surface area and controllable surface properties. While several methods to access 2D inorganic materials are known, the investigation of 2D organic nanomaterials is less well developed on account of the lack of ready synthetic accessibility. Crystallization-driven self-assembly (CDSA) has become a powerful method to access a wide range of complex but precisely-defined nanostructures. The preparation of 2D structures, however, particularly those aimed towards biomedical applications, is limited, with few offering biocompatible and biodegradable characteristics as well as control over self-assembly in two dimensions. Herein, in contrast to conventional self-assembly rules, we show that the solubility of polylactide (PLLA)-based amphiphiles in alcohols results in unprecedented shape selectivity based on unimer solubility. We use log Poct analysis to drive solvent selection for the formation of large uniform 2D diamond-shaped platelets, up to several microns in size, using long, soluble coronal blocks. By contrast, less soluble PLLA-containing block copolymers yield cylindrical micelles and mixed morphologies. The methods developed in this work provide a simple and consistently reproducible protocol for the preparation of well-defined 2D organic nanomaterials, whose size and morphology are expected to facilitate potential applications in drug delivery, tissue engineering and in nanocomposites.
机译:由于它们的高表面积和可控表面性能,因此2D如石墨烯,丙酮(R)粘土或钼纳米末期对材料群落的影响极高。虽然已知几种进入2D无机材料的方法,但由于缺乏现成的合成可接近性,对2D有机纳米材料的研究较小。结晶驱动的自组装(CDSA)已成为进入宽范围的复合物但精确定义的纳米结构的强大方法。然而,2D结构的制备,特别是旨在生物医学应用的结构是有限的,很少提供生物相容性和可生物降解的特性,以及在两个维度中的自组装上的控制。在此,与常规的自组装规则相比,我们表明,基于单能溶解性的醇中的聚丙酯(PLLA)的两亲的两亲的两亲的溶解度导致前所未有的形状选择性。我们使用LOG POCT分析来驱动溶剂选择,以形成大均匀的2D菱形血小板,尺寸高达几微米,使用长,可溶性冠状块。相反,含可溶性PLLA的嵌段共聚物产生圆柱形胶束和混合形态。本作作品中开发的方法提供了一种简单且始终可再现的方案,用于制备明确定义的2D有机纳米材料,其尺寸和形态预期促进药物递送,组织工程和纳米复合材料中的潜在应用。

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  • 来源
    《Chemical science》 |2017年第6期|共8页
  • 作者单位

    Univ Warwick Dept Chem Gibbet Hill Coventry CV4 7AL W Midlands England;

    Univ Warwick Dept Chem Gibbet Hill Coventry CV4 7AL W Midlands England;

    Univ Warwick Dept Chem Gibbet Hill Coventry CV4 7AL W Midlands England;

    Univ Warwick Dept Phys Gibbet Hill Coventry CV4 7AL W Midlands England;

    Univ Warwick Dept Phys Gibbet Hill Coventry CV4 7AL W Midlands England;

    Penn State Univ Dept Chem New Kensington PA 15068 USA;

    Univ Warwick Dept Chem Gibbet Hill Coventry CV4 7AL W Midlands England;

    Univ Warwick Dept Chem Gibbet Hill Coventry CV4 7AL W Midlands England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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