Designing of benzofuran‐based monomers for photodetectors through similarity analysis and library enumeration

Author:

Saqib Muhammad1ORCID,Mubashir Tayyaba2,Tahir Mudassir Hussain3,Javed Muqadas1,Hameed Asima4,Aziz Asad4,Sayed Shaban R. M.5,El‐ansary Hosam O.6

Affiliation:

1. Institute of Chemistry Khwaja Fareed University of Engineering & Information Technology Rahim Yar Khan Pakistan

2. Institute of Chemistry University of Sargodha Sargodha Pakistan

3. Field Science Center for Northern Biosphere Hokkaido University Sapporo Hokkaido Japan

4. Faculty of Science and Technology University of Central Punjab Lahore Pakistan

5. Department of Botany and Microbiology, College of Science King Saud University Riyadh Saudi Arabia

6. Department of Plant Production, College of Food & Agriculture Sciences King Saud University Riyadh Saudi Arabia

Abstract

AbstractOrganic molecules have been extensively utilized in various applications including materials science, chemical, and biomedical fields. Traditionally, the design of organic molecules is achieved through experimental approaches, guided by conceptual insights, intuition, and experience. Although these experimental approaches have been successfully utilized to unveil various high‐performance materials, these methods show serious limitations due to vast design space and the ever‐increasing demand for organic molecules (new materials). Artificial intelligence with computer science is used by modern researchers to design materials with better performance and for predicting the properties of new materials. Herein, benzofuran‐based building blocks are used as a standard molecule to search for new building blocks. Similarity analysis is performed to screen/search potential candidates for photodetectors based on the chemical structural similarity. Extended‐connectivity fingerprints (ECFPs) are used for the similarity analysis. The virtual libraries of unique monomers are enumerated. The breaking retro‐synthetically interesting chemical substructures (BRICS) method is also used to design building blocks by automatically decomposing and combining monomers in enumerated libraries. Moreover, this work offers a potential way to identify new monomers for photodetectors cost‐effectively and rapidly.

Funder

King Saud University

Publisher

Wiley

Subject

Organic Chemistry,Physical and Theoretical Chemistry

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