Supramolecular Janus Nanocylinders: Controlling Their Characteristics by the Self-Assembly Process.

IF 4.2 3区 化学 Q2 POLYMER SCIENCE
Sandra Kalem, David Siefker, Mingsheng Ji, Jean-Michel Guigner, Ralf Schweins, Sandrine Pensec, Jutta Rieger, Laurent Bouteiller, Erwan Nicol, Olivier Colombani
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Abstract

Janus NanoRods (JNR) are anisotropic and non-symmetrical colloids with two faces of different chemical composition. They are difficult to prepare because of their nanometric dimensions and strong anisotropy. Recently, a versatile strategy was developed, allowing the formation of JNR relying on the self-assembly in aqueous medium of two polymers end-functionalized with non-symmetrical and complementary hydrogen bonding stickers. However, the supramolecular JNR prepared following this strategy are out-of-equilibrium (frozen) and therefore their characteristics depend on the self-assembly process. The present study elucidates the formation mechanism of the JNR and the parameters of the self-assembly process influencing their characteristics. The polymers are initially dissolved as unimers in DMSO. Dropwise addition of water triggers the rapid assembly of more and more unimers into long nanocylinders that are unable to grow anymore once formed. Consequently, increasing the dropwise addition rate of water hardly impacts the process, whereas lowering the initial polymer concentration in DMSO reduces both the length and proportion of nanocylinders. Increasing temperature during water addition weakens hydrogen bonds, triggering the formation of a mixture of spheres and nanocylinders. Many supramolecular polymer assemblies are frozen in solution and these findings should help understanding how to control their characteristics, allowing to adapt them to a target application.

超分子 Janus 纳米圆柱:通过自组装过程控制其特性。
Janus NanoRods(JNR)是一种各向异性的非对称胶体,其两面具有不同的化学成分。由于其纳米尺寸和强烈的各向异性,它们很难制备。最近,人们开发出了一种多功能策略,通过在水介质中自组装两种具有非对称和互补氢键粘合末端功能化的聚合物来形成 JNR。然而,采用这种策略制备的超分子 JNR 是非均衡(冻结)的,因此其特性取决于自组装过程。本研究阐明了 JNR 的形成机制以及影响其特性的自组装过程参数。聚合物最初以单体形式溶解在二甲基亚砜中。滴加水滴会促使越来越多的单聚物快速组装成长的纳米圆柱,这些圆柱一旦形成就无法再生长。因此,提高水的滴加速度几乎不会影响这一过程,而降低二甲基亚砜中的初始聚合物浓度则会减少纳米柱的长度和比例。加水过程中温度升高会减弱氢键,从而引发球体和纳米圆柱体混合体的形成。许多超分子聚合物组装体在溶液中是凝固的,这些发现将有助于了解如何控制它们的特性,从而使它们适应目标应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Macromolecular Rapid Communications
Macromolecular Rapid Communications 工程技术-高分子科学
CiteScore
7.70
自引率
6.50%
发文量
477
审稿时长
1.4 months
期刊介绍: Macromolecular Rapid Communications publishes original research in polymer science, ranging from chemistry and physics of polymers to polymers in materials science and life sciences.
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