Precise Control of Both Dispersity and Molecular Weight Distribution Shape by Polymer Blending


Date

2021-08-23

Publication Type

Journal Article

ETH Bibliography

yes

Citations

Altmetric

Data

Abstract

The breadth and the shape of molecular weight distributions can significantly influence fundamental polymer properties that are critical for various applications. However, current approaches require the extensive synthesis of multiple polymers, are limited in dispersity precision and are typically incapable of simultaneously controlling both the dispersity and the shape of molecular weight distributions. Here we report a simplified approach, whereby on mixing two polymers (one of high D and one of low D), any intermediate dispersity value can be obtained (e.g. from 1.08 to 1.84). Unrivalled precision is achieved, with dispersity values obtained to even the nearest 0.01 (e.g. 1.37 -> 1.38 -> 1.39 -> 1.40 -> 1.41 -> 1.42 -> 1.43 -> 1.44 -> 1.45), while maintaining fairly monomodal molecular weight distributions. This approach was also employed to control the shape of molecular weight distributions and to obtain diblock copolymers with high dispersity accuracy. The straightforward nature of our methodology alongside its compatibility with a wide range of polymerisation protocols (e.g. ATRP, RAFT), significantly expands the toolbox of tailored polymeric materials and makes them accessible to all researchers.

Publication status

published

Editor

Book title

Volume

60 (35)

Pages / Article No.

19383 - 19388

Publisher

Wiley-VCH

Event

Edition / version

Methods

Software

Geographic location

Date collected

Date created

Subject

block copolymers; dispersity; molecular weight distribution shape; polymer blending

Organisational unit

09644 - Anastasaki, Athina / Anastasaki, Athina check_circle

Notes

Funding

949219 - Reversing Controlled Radical Polymerisation: Towards Complete Depolymerisation (EC)

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