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We report a new method to synthesize rigid ladder polymers using efficient palladium catalyzed annulation reactions with low catalyst loading (1 mol %). Rigid ladder polymers with benzocyclobutene backbone linkages can be synthesized from copolymerization of readily accessible aryl dibromides and norbornadiene or polymerization of AB type monomers bearing norbornene and aryl bromide or triflate moieties. High molecular weight (10-40 kDa) rigid ladder polymers can be obtained with complete monomer conversions. Diverse monomers also gave different, fixed ladder polymer conformations. The ladder polymers exhibited excellent thermal stability, high carbonization yield, and large intrinsic porosity.
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Sheng Liu
National University of Defense Technology
Zexin Jin
Westlake University
Yew Chin Teo
Institute of Materials Research and Engineering
Journal of the American Chemical Society
Stanford University
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Liu et al. (Tue,) studied this question.
synapsesocial.com/papers/69ffd709ef8139f8ff777430 — DOI: https://doi.org/10.1021/ja5110415
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