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Design and synthesis of isosorbide-based copolycarbonates with high transparency and low hygroscopicity for optical applications

机译:设计和合成具有高透明度和低吸湿性的异山梨酯基共聚碳酸酯,用于光学应用

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摘要

Poly(isosorbide carbonate) (PIC) is an example of the shift from fossil to bio-based feedstocks in polymeric materials. However, the naturally high hygroscopicity of isosorbide may lead to the bad dimensional stability of its polymers, limiting its application. This work aims to develop a series of isosorbide-based copolycarbonates by introducing hydrophobic groups, such as alkane chains and aromatic rings, into the polymer backbone via one-pot melt polycondensation. As expected, the molecular structure and steric hindrance of the comonomer have a remarkable effect on the water absorption of the copolycarbonates. Among the comonomers, tricyclo5.2.1.0(2,6)decanedimethanol with an alkane skeleton bridge effectively reduces the saturation water absorption by 61 compared to PIC. The water absorption mechanism and kinetics of the copolycarbonates are investigated. Moreover, the incorporation of comonomers in PIC not only exhibits stronger hydrophobicity, but also significantly improves its optical properties. Copolycarbonates obtained have a light transmittance of 92 and a refractive index of 1.5394, which are higher than those of PIC, along with better thermal stability, flexibility, and lower glass transition temperature. This work provides a new strategy for the design of isosorbide-based polycarbonates for use in optics.
机译:聚碳酸异山梨酯(PIC)是聚合物材料从化石原料向生物基原料转变的一个例子。然而,异山梨醇天然的高吸湿性可能导致其聚合物的尺寸稳定性差,从而限制其应用。本工作旨在通过一锅熔融缩聚将烷烃链和芳环等疏水基团引入聚合物主链中,开发一系列基于异山梨酯的共聚碳酸酯。正如预期的那样,共聚单体的分子结构和空间位阻对共聚碳酸酯的吸水率有显著影响。在共聚单体中,与PIC相比,具有烷烃骨架桥的三环[5.2.1.0(2,6)]癸二甲醇可有效降低61%的饱和吸水率。研究了共聚碳酸酯的吸水机理和动力学。此外,共聚单体在PIC中的掺入不仅表现出更强的疏水性,而且显著改善了其光学性能。得到的共聚碳酸酯透光率为92%,折射率为1.5394,高于PIC的光稳定性、柔韧性和较低的玻璃化转变温度。这项工作为设计用于光学的异山梨酯基聚碳酸酯提供了一种新的策略。

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