Hang-Yip Liu, Steffen Schulze, et al.
Proceedings of SPIE - The International Society for Optical Engineering
Functional groups are specific molecular patterns that influence a molecule's chemical and physical properties. Identifying them is crucial for understanding the structure-activity relationships. Currently, accurately extracting functional groups from complex molecular structures remains a challenge. In this work, we present AccFG, a tool designed for precise functional group extraction and molecular structure comparison. AccFG generates refined and structured functional group descriptors for molecules based on a predefined library, while lowering the barrier to encoding and extending the library with new functional group definitions. Additionally, AccFG's output includes identified functional groups and heterocycles with their corresponding mapped atom numbers, which enables molecular structure comparisons at the functional group level with alkane differences (differences in carbon backbone). We evaluated its performance on various data sets and examples with manual examination. The results demonstrate that AccFG can accurately extract functional groups from individual molecules and identify functional group-level differences between molecular pairs, effectively bridging the molecular modality and textual descriptors. We anticipate that AccFG will serve as a useful tool for processing functional groups, and its comprehensive, structured output enables fine-grained insights between molecular structures and properties. The code is available at https://github.com/xuanliugit/AccFG.
Hang-Yip Liu, Steffen Schulze, et al.
Proceedings of SPIE - The International Society for Optical Engineering
Pradip Bose
VTS 1998
Frank R. Libsch, Takatoshi Tsujimura
Active Matrix Liquid Crystal Displays Technology and Applications 1997
Sai Zeng, Angran Xiao, et al.
CAD Computer Aided Design