Abstract

The regulation of polymer topology and the precise control over the monomer sequence is crucial and challenging in polymer science. Herein, we report an efficient solution-phase synthetic strategy to prepare regio- and sequence-controlled conjugated polymers with topological variations via the usage of methyliminodiacetic acid (MIDA) boronates. Based on the solubility of MIDA boronates and their unusual binary affinity for silica gel, the synthesized regio- and sequence-defined conjugated oligomers can be rapidly purified via precipitation or automatic liquid chromatography. These synthesized discrete oligomers can be used for iterative exponential and sequential growth to obtain linear and dendrimer-like star polymers. Moreover, different topological sequence-controlled conjugated polymers are conveniently prepared from these discrete oligomers via condensation polymerization. By investigating the structure-property relationship of these polymers, we find that the optical properties are strongly influenced by the regiochemistry, which may give inspiration to the design of optoelectronic polymeric materials.

The topology of polymers could be carefully controlled if the monomers were to be well-defined in sequence and regiochemical linkage. Here the authors present a method to synthesize oligomers of controlled sequence and regiochemistry, formed through iterative liquid-phase boronate-tagged syntheses, which are precursors to topologically distinct polymers.

Details

Title
Regio- and sequence-controlled conjugated topological oligomers and polymers via boronate-tag assisted solution-phase strategy
Author
Xu Chaoran 1   VIAFID ORCID Logo  ; He Congze 1 ; Li, Ning 1 ; Yang, Shicheng 1 ; Du Yuxuan 1 ; Matyjaszewski Krzysztof 2   VIAFID ORCID Logo  ; Pan Xiangcheng 1   VIAFID ORCID Logo 

 Fudan University, State Key Laboratory of Molecular Engineering of Polymers, Department of Macromolecular Science, Shanghai, China (GRID:grid.8547.e) (ISNI:0000 0001 0125 2443) 
 Carnegie Mellon University, Department of Chemistry, Center for Macromolecular Engineering, Pittsburgh, United States (GRID:grid.147455.6) (ISNI:0000 0001 2097 0344) 
Publication year
2021
Publication date
2021
Publisher
Nature Publishing Group
e-ISSN
20411723
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
2579464020
Copyright
© The Author(s) 2021. This work is published under http://creativecommons.org/licenses/by/4.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.