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

Author:

Song Zhiqiang12,Xu Fei234ORCID,Wang Heng2,Zhang Zhencai25,Feng Mi23,Zhang Yiwen2,Yang Zhao2,Xie Jingxue2,Su Dan2,Li Tao1

Affiliation:

1. School of Chemical Engineering Zhengzhou University Zhengzhou China

2. Beijing Key Laboratory of Ionic Liquids Clean Process, CAS Key Laboratory of Green Process and Engineering State Key Laboratory of Multiphase Complex Systems, Institute of Process Engineering, Chinese Academy of Sciences Beijing China

3. New Materials Research Department Zhengzhou Institute of Emerging Industrial Technology Zhengzhou China

4. Ionic Liquids and Low Carbon Energy Research Group Langfang Technological Centre of Green Industry Langfang People's Republic of China

5. Advanced Materials Department Huizhou Institute of Green Energy and Advanced Materials Huizhou Guangdong China

Abstract

AbstractPoly(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, tricyclo[5.2.1.0(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.

Funder

Beijing Natural Science Foundation

Chinese Academy of Sciences

National Natural Science Foundation of China

Natural Science Foundation of Hebei Province

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,Surfaces, Coatings and Films,General Chemistry

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