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Improving the Thermal Properties of Polycarbonate via the Copolymerization of a Small Amount of Bisphenol Fluorene with Bisphenol A

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HINDAWI LTD
DOI: 10.1155/2022/9255159

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  1. Fundamental Research Funds in Heilongjiang Provincial universities [CLKFKT2021Z1]

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Polycarbonate is a transparent plastic with high mechanical/thermal properties. Copolycarbonates from bisphenol-A (BPA), 9, 9-bis (4-hydroxyphenyl) fluorene (BHPF), and diphenyl carbonate (DPC) showed higher glass transition and thermal decomposition temperatures compared to regular polycarbonates, while maintaining their processing properties. This makes them potential materials for high-temperature resistance.
Polycarbonate is an attractive transparent plastic with high mechanical/thermal properties. A family of copolycarbonates of bisphenol-A (BPA), 9, 9-bis (4-hydroxyphenyl) fluorene (BHPF), and diphenyl carbonate (DPC) were prepared by a transesterification polymerization. The weight-average molecular weight of the polycarbonates ranges from 65,000 to 107,000 g/mol; the copolycarbonates showed T-g and Td-5% from 63-70 & DEG;C and 100-105 & DEG;C higher than the control, respectively. Meanwhile, the processing properties of polycarbonate remain unchanged. These properties endow the polymers with potential for use as high-temperature resistance materials.

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