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用于高产率合成双面纳米环的ABC三嵌段三元共聚物的受限组装

Confinement Assembly of ABC Triblock Terpolymers for the High-Yield Synthesis of Janus Nanorings.

作者信息

Steinhaus Andrea, Chakroun Ramzi, Müllner Markus, Nghiem Tai-Lam, Hildebrandt Marcus, Gröschel André H

机构信息

Physical Chemistry , University of Duisburg-Essen , 47057 Duisburg , Germany.

Key Center for Polymers and Colloids, School of Chemistry and The University of Sydney Nano Institute (Sydney Nano) , The University of Sydney , Sydney 2006 , New South Wales , Australia.

出版信息

ACS Nano. 2019 Jun 25;13(6):6269-6278. doi: 10.1021/acsnano.8b09546. Epub 2019 May 15.

Abstract

Block copolymers are versatile building blocks for the self-assembly of functional nanostructures in bulk and solution. While spheres, cylinders, and bilayer sheets are thermodynamically preferred shapes and frequently observed, ring-shaped nanoparticles are more challenging to realize due to energetic penalties that originate from their anisotropic curvature. Today, a handful of concepts exist that produce core-shell nanorings, while more complex ( e. g., patchy) nanorings are currently out of reach and have only been predicted theoretically. Here, we demonstrate that confinement assembly of properly designed ABC triblock terpolymers is a general route to synthesize Janus nanorings in high purity. The triblock terpolymer self-assembles in the spherical confinement of nanoemulsion droplets into prolate ellipsoidal microparticles with an axially stacked lamellar-ring ( lr)-morphology. We clarified and visualized this complex, yet well-ordered, morphology with transmission electron tomography. Blocks A and C formed stacks of lamellae with the B microdomain sandwiched in-between as nanorings. Cross-linking of the B-rings allowed disassembly of the microparticles into Janus nanorings carrying two strictly separated polymer brushes of A and C on the top and bottom. Decreasing the B volume leads to Janus spheres and rods, while an increase of B results in perforated and filled Janus disks. The confinement assembly of ABC triblock terpolymers is a general process that can be extended to other block chemistries and will allow to synthesize a large variety of complex micro- and nanoparticles that inspire studies in self-assembly, interfacial stabilization, colloidal packing, and nanomedicine.

摘要

嵌段共聚物是用于在本体和溶液中自组装功能性纳米结构的通用构建单元。虽然球体、圆柱体和双层片是热力学上优选的形状且经常被观察到,但由于其各向异性曲率产生的能量惩罚,环形纳米颗粒更具挑战性。如今,存在一些能够制备核壳纳米环的概念,而更复杂的(例如,有补丁的)纳米环目前还无法实现,仅在理论上有预测。在这里,我们证明了适当设计的ABC三嵌段三元共聚物的受限组装是一种以高纯度合成Janus纳米环的通用方法。三嵌段三元共聚物在纳米乳液滴的球形限制中自组装成具有轴向堆叠的层状环(lr)形态的扁长椭圆形微粒。我们通过透射电子断层扫描阐明并可视化了这种复杂但有序的形态。A和C嵌段形成层状堆叠,B微区夹在中间形成纳米环。B环的交联使得微粒能够分解成Janus纳米环,在顶部和底部带有两个严格分离的A和C聚合物刷。减少B的体积会导致Janus球体和棒状结构,而增加B则会产生穿孔和填充的Janus盘。ABC三嵌段三元共聚物的受限组装是一个通用过程,可以扩展到其他嵌段化学体系,并将允许合成各种各样复杂的微米和纳米颗粒,从而激发对自组装、界面稳定、胶体堆积和纳米医学的研究。

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