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由供体和受体构建块的超分子共组装驱动的彩色双面纳米圆柱体

Colored Janus Nanocylinders Driven by Supramolecular Coassembly of Donor and Acceptor Building Blocks.

作者信息

Choisnet Thomas, Canevet David, Sallé Marc, Lorthioir Cédric, Bouteiller Laurent, Woisel Patrice, Niepceron Frédérick, Nicol Erwan, Colombani Olivier

机构信息

Institut des Molécules et Matériaux du Mans (IMMM), UMR 6283 CNRS, Le Mans Université, Avenue Olivier Messiaen, 72085 Le Mans, Cedex 9, France.

Laboratoire MOLTECH-Anjou, UNIV Angers, SFR MATRIX, UMR CNRS 6200, 2 Bd Lavoisier, 49045 Angers Cedex, France.

出版信息

ACS Nano. 2021 Feb 23;15(2):2569-2577. doi: 10.1021/acsnano.0c07039. Epub 2021 Jan 29.

Abstract

Janus nanocylinders exhibit nanometric dimensions, a high aspect ratio, and two faces with different chemistries (Janus character), making them potentially relevant for applications in optics, magnetism, catalysis, surface nanopatterning, or interface stabilization, but they are also very difficult to prepare by conventional strategies. In the present work, Janus nanocylinders were prepared by supramolecular coassembly in water of two different polymers functionalized with complementary assembling units. The originality of our approach consists in combining charge transfer complexation between electron-rich and electron-poor units with hydrogen bonding to (1) drive the supramolecular formation of one-dimensional structures (cylinders), (2) force the two polymer arms on opposite sides of the cylinders independently of their compatibility, resulting in Janus nanoparticles, and (3) detect coassembly through a color change of the solution upon mixing of the functional polymers.

摘要

Janus纳米圆柱体具有纳米级尺寸、高纵横比以及两个具有不同化学性质的面(Janus特性),这使得它们在光学、磁学、催化、表面纳米图案化或界面稳定化等应用中具有潜在的相关性,但通过传统策略制备它们也非常困难。在本工作中,Janus纳米圆柱体是通过两种用互补组装单元功能化的不同聚合物在水中进行超分子共组装制备的。我们方法的独特之处在于将富电子单元和缺电子单元之间的电荷转移络合与氢键相结合,以(1)驱动一维结构(圆柱体)的超分子形成,(2)迫使圆柱体相对两侧的两个聚合物臂独立于它们的相容性,从而得到Janus纳米颗粒,以及(3)通过功能聚合物混合后溶液颜色的变化来检测共组装。

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