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◆ Energy & Fuels2025-10-13· Polycarbonate

Direct Synthesis of Polycarbonate Diols with Tunable Molecular Weights from Atmospheric Flow CO <sub>2</sub> and Diols

Pengru Chen, Hanghao Lin, Yusuke Kita, Kenji Nakao, Takahiro Arai, Akira Nakayama, Masazumi Tamura

原始摘要(英文原文)· Original abstract
The synthesis of polycarbonates with various molecular weights, which are effective as precursors for producing functional plastics and polyurethanes, is essential to meet diverse applications. In our previous work, we have reported the direct synthesis of polycarbonate diols from atmospheric flow CO 2 and diols over CeO 2 without dehydrating agents, where the average molecular weight of polycarbonate diols is around 3500 g mol –1 . In this study, we synthesize polycarbonates from CO 2 and 1,6-hexanediol with molecular weights of up to 7700 g mol –1 . The molecular weights are tunable within 1500–5500 g mol –1 by controlling the reaction solvent systems, such as the solvent types, ratios, and amounts. Low water affinity of solvents and high 1,6-hexanediol concentrations are preferable for a high reaction rate, whereas their impact on molecular weight variation remains marginal. The effect of solvents on the molecular weight becomes pronounced when the solvent amounts are reduced, where evaporation of 1,6-hexanediol is facilitated to result in water elimination, thereby enhancing the conversion of 1,6-hexanediol and accelerating the polycarbonate chain growth.
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Direct Synthesis of Polycarbonate Diols with Tunable Molecular Weights from Atmospheric Flow CO <sub>2</sub> and Diols — 科研速览 Science Skim