Autonomous Synthesis and Inverse Design of Electronic Polymers with High Efficiency and Accuracy
Yukun Wu, Aikaterini Vriza, Doga Ozgulbas, Rafael Vescovi, Zhiyang Wang, Shiyu Hu, Yuepeng Zhang, Qiaomu Yang, Anna M. Österholm, John R. Reynolds, Subramanian Sankaranarayanan, Maria K. Y. Chan, Ian Foster, Henry Chan, Jianguo Mei, Jie Xu
- 发表年份
- 2025
- 引用次数
- 1
- 访问权限
- 开放获取
摘要
The design and synthesis of functional polymers, aimed at targeted properties through specific structures, has long been challenged by their complex and often nonlinear structure-property relationships. Key processes, including knowledge accumulation for predictive design and experimental refinement and validation, are traditionally labor-insensitive and time-consuming, making it difficult to balance accuracy and efficiency. Here, we introduce an accelerated, autonomous system for the on-demand synthesis of electronic polymers that achieves desired electrochromic functionality with high accuracy and efficiency. Our approach leverages large language model-assisted data mining, a physics-informed copolymer machine learning model, and an AI-driven autonomous robotic workflow in the Polybot lab. Within 72 hours, Polybot autonomously synthesized electrochromic polymers with targeted, unreported color values, including green polymers with specific absorption profiles, precisely fine-tuning copolymer structures with a 5% step size in comonomer composition within a three-monomer system. A publicly accessible electrochromic polymer informatics database has also been created to foster knowledge exchange.
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