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Scalable synthesis of an architectural library of well‐defined poly(acrylic acid) derivatives: Role of structure on dispersant performance
Authors:David J Lunn  Sungbaek Seo  Sang‐Ho Lee  Raghida Bou Zerdan  Kaila M Mattson  Nicolas J Treat  Alaina J McGrath  Will R Gutekunst  Jimmy Lawrence  Allison Abdilla  Athina Anastasaki  Abigail S Knight  Bernhard V K J Schmidt  Morgan W Bates  Paul G Clark  Jonathan P DeRocher  Antony K Van Dyk  Craig J Hawker
Abstract:The synthesis and systematic comparison of a comprehensive library of well‐defined polymer architectures based on poly(acrylic acid) is reported. Through the development of new synthetic methodologies, linear, single branched, precision‐branched comb, and star polymers were prepared and their performance as dispersants was evaluated. The ability to accurately control chain lengths and branch points allows the subtle interplay between structure and dispersant performance to be defined and affords critical insights into the design of improved polymeric additives for coating formulations. The general industrial relevance of ionic polymers and branched macromolecular architectures supports these design rules for a wide range of other applications and materials, including as additives for personal care products and in water treatment. © 2019 Wiley Periodicals, Inc. J. Polym. Sci., Part A: Polym. Chem. 2019 , 57, 716–725
Keywords:controlled branching  dispersants  poly(acrylic acid)  polymer architectures  polymeric additives  scalable synthesis
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