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通过分子模拟生成共价三嗪基聚合物的原子结构

Atomistic structure generation of covalent triazine-based polymers by molecular simulation.

作者信息

Song Ce, Hu Fangyuan, Meng Zhaoliang, Li Shengming, Shao Wenlong, Zhang Tianpeng, Liu Siyang, Jian Xigao

机构信息

School of Mathematical Sciences, Dalian University of Technology Dalian 116024 China

State Key Laboratory of Fine Chemicals, Liaoning Province Engineering Research Centre of High Performance Resins, Dalian University of Technology Dalian 116024 China.

出版信息

RSC Adv. 2020 Jan 27;10(8):4258-4263. doi: 10.1039/c9ra11035f. eCollection 2020 Jan 24.

Abstract

The structures of amorphous materials are generally difficult to characterize and comprehend due to their unordered nature and indirect measurement techniques. However, molecular simulation has been considered as an alternative method that can provide molecular-level information supplementary to experimental techniques. In this work, a new approach for modelling the atomistic structures of amorphous covalent triazine-based polymers is proposed and employed on two experimentally synthesized covalent triazine-based polymers. To examine the proposed modelling approach, the properties of the established models, such as surface areas, pore volumes, structure factors and N adsorption isotherms, were calculated and compared with the experimental data. Excellent consistencies were observed between the simulated models and experimental samples, consequently validating the proposed models and the modelling approach. Moreover, the proposed modelling approach can be applied to new covalent triazine-based polymers for predictive purposes and to provide design strategies for future synthesis works.

摘要

由于非晶态材料的无序性质和间接测量技术,其结构通常难以表征和理解。然而,分子模拟被认为是一种可以提供补充实验技术的分子水平信息的替代方法。在这项工作中,提出了一种用于模拟非晶态共价三嗪基聚合物原子结构的新方法,并将其应用于两种实验合成的共价三嗪基聚合物。为了检验所提出的建模方法,计算了所建立模型的性质,如表面积、孔体积、结构因子和N吸附等温线,并与实验数据进行了比较。在模拟模型和实验样品之间观察到了极好的一致性,从而验证了所提出的模型和建模方法。此外,所提出的建模方法可应用于新型共价三嗪基聚合物以进行预测,并为未来的合成工作提供设计策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2107/9049061/1118d5f8c1ba/c9ra11035f-f1.jpg

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