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Updated: May 16, 2025

Synthesis and Characterization of Supramolecular Colloids
Published on: April 22, 2016
Secondary nucleation as a strategy towards hierarchically organized mesoscale topologies in supramolecular
Sougata Datta1, Hiroki Itabashi2, Takuho Saito2
1Institute for Advanced Academic Research, Chiba University, Chiba, Japan. sougata.datta@chiba-u.jp.
Abstract:
Developing new generic methodologies for organizing molecules into nano- to mesoscale structures of precise shapes and sizes is a research topic at the forefront of modern chemistry. Creating hierarchical molecular assembly, especially at the mesoscale, is important to realize functions reminiscent of those manifested by biomolecular assemblies in the mesoscopic regime. However, this is challenging due to the difficulty in maintaining stringent controllability over the organization of molecules at higher hierarchical levels, wherein weak non-directional intermolecular interactions rather than strong directional interactions typically play a predominant role. Recent studies have revealed that secondary nucleation, often experienced by one-dimensional assemblies such as supramolecular polymers that grow with spontaneous nucleation, is effective in the hierarchical construction of higher-order structures. Here we illustrate how secondary nucleation can be combined with the well-established precision synthesis of supramolecular polymers to realize precise control over hierarchical structures in the mesoscopic regime. We present a roadmap for creating hierarchical supramolecular polymers by exploiting secondary nucleation-elongation processes and discuss future prospects for the field.
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