Controlled synthesis of organic two-dimensional nanostructures via reaction-driven, cooperative supramolecular polymerization

Dhiman, Shikha ; Ghosh, Rita ; Sarkar, Souvik ; George, Subi J. (2020) Controlled synthesis of organic two-dimensional nanostructures via reaction-driven, cooperative supramolecular polymerization Chemical Science, 11 (47). pp. 12701-12709. ISSN 2041-6520

Full text not available from this repository.

Official URL: http://doi.org/10.1039/d0sc02670k

Related URL: http://dx.doi.org/10.1039/d0sc02670k

Abstract

The bottom-up approach of supramolecular polymerization is an effective synthetic method for functional organic nanostructures. However, the uncontrolled growth and polydisperse structural outcome often lead to low functional efficiency. Thus, precise control over the structural characteristics of supramolecular polymers is the current scientific hurdle. Research so far has tended to focus on systems with inherent kinetic control by the presence of metastable state monomers either through conformational molecular design or by exploring pathway complexity. The need of the hour is to create generic strategies for dormant states of monomers that can be extended to different molecules and various structural organizations and dimensions. Here we venture to demonstrate chemical reaction-driven cooperative supramolecular polymerization as an alternative strategy for the controlled synthesis of organic two�dimensional nanostructures. In our approach, the dynamic imine bond is exploited to convert a non�assembling dormant monomer to an activated amphiphilic structure in a kinetically controlled manner. The chemical reaction governed retarded nucleation–elongation growth provides control over dispersity and size.

Item Type:Article
Source:Copyright of this article belongs to The Royal Society of Chemistry.
ID Code:117682
Deposited On:29 Apr 2021 11:56
Last Modified:29 Apr 2021 11:56

Repository Staff Only: item control page