Determination of Reaction Kinetics by Time‐Resolved Small‐Angle X‐ray Scattering during Polymerization‐Induced Self‐Assembly: Direct Evidence for Monomer‐Swollen Nanoparticles

Author:

Liao Guoxing12,Derry Matthew J.13,Smith Andrew J.4,Armes Steven P.1,Mykhaylyk Oleksandr O.1ORCID

Affiliation:

1. Department of Chemistry University of Sheffield Dainton Building Sheffield S3 7HF UK

2. South China Advanced Institute for Soft Matter Science and Technology School of Emergent Soft Matter Guangdong Provincial Key Laboratory of Functional and Intelligent Hybrid Materials and Devices South China University of Technology Guangzhou 510640 China

3. Aston Advanced Materials Research Centre Aston University Aston Triangle Birmingham B4 7ET UK

4. Beamline I22 Diamond Light Source Ltd Diamond House Didcot OX11 0DE UK

Abstract

AbstractThe kinetics of heterogeneous polymerization is determined directly using small‐angle X‐ray scattering (SAXS). This important advancement is exemplified for the synthesis of sterically‐stabilized diblock copolymer nanoparticles by reversible addition‐fragmentation chain transfer (RAFT) dispersion polymerization of benzyl methacrylate (BzMA) in mineral oil at 90 °C. The principle of mass balance is invoked to derive a series of equations for the analysis of the resulting time‐resolved SAXS patterns. Importantly, there is a continuous change in the X‐ray scattering length density for the various components within the reaction mixture. This enables the volume fraction of unreacted BzMA monomer to be calculated at any given time point, which enables the polymerization kinetics to be monitored in situ directly without relying on supplementary characterization techniques. Moreover, SAXS enables the local concentration of both monomer and solvent within the growing swollen nanoparticles to be determined during the polymerization. Data analysis reveals that the instantaneous rate of BzMA polymerization is proportional to the local monomer concentration within the nanoparticles. In principle, this powerful new time‐resolved SAXS approach can be applicable to other heterogeneous polymerization formulations.

Funder

Engineering and Physical Sciences Research Council

Leverhulme Trust

Diamond Light Source

Publisher

Wiley

Subject

General Medicine

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