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Book Synopsis

Microgels are cross-linked polymer networks in size of 10 - 1000 nm. In this thesis, three predictive models for the synthesis of poly(N-Vinylcaprolactam)-based microgels by precipitation polymerization are developed. The three models address the three characteristic properties of microgel synthesis - conversion, microgel growth and internal structure.

The first model is a reduced two-phase model, which is used for the investigation of the reaction progress and thus conversion in the microgel synthesis. The integration of parameter values from quantum mechanical calculations as well as experimental investigations elucidates the copolymerization of the monomer N-Vinylcaprolactam with the cross-linker. Further, it provides insight into fundamentals of the reaction, such as the primary reaction locus.

The second model describes additionally microgel growth as well as their size distribution. Simulations show the importance of radical absorption and aggregation for the micro

Modeling and Prediction of Microgel Synthesis

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    A Paperback by Franca Alisa Laursa Janssen

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      View other formats and editions of Modeling and Prediction of Microgel Synthesis by Franca Alisa Laursa Janssen

      Publisher: Verlag G. Mainz
      Publication Date: Publication Date: 8/1/2021
      ISBN13: 9783958864047, 978-3958864047
      ISBN10: 395886404X

      Description

      Book Synopsis

      Microgels are cross-linked polymer networks in size of 10 - 1000 nm. In this thesis, three predictive models for the synthesis of poly(N-Vinylcaprolactam)-based microgels by precipitation polymerization are developed. The three models address the three characteristic properties of microgel synthesis - conversion, microgel growth and internal structure.

      The first model is a reduced two-phase model, which is used for the investigation of the reaction progress and thus conversion in the microgel synthesis. The integration of parameter values from quantum mechanical calculations as well as experimental investigations elucidates the copolymerization of the monomer N-Vinylcaprolactam with the cross-linker. Further, it provides insight into fundamentals of the reaction, such as the primary reaction locus.

      The second model describes additionally microgel growth as well as their size distribution. Simulations show the importance of radical absorption and aggregation for the micro

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