Efficient side-chain engineering of thieno-imidazole salt-based molecule to boost the optoelectronic attributes of organic solar cells: A DFT approach
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Computer Graphics and Computer-Aided Design,Physical and Theoretical Chemistry,Spectroscopy
Reference74 articles.
1. Designing of benzothiazole based non-fullerene acceptor (NFA) molecules for highly efficient organic solar cells;Shehzad;Computational and Theoretical Chemistry,2020
2. World Energy Resources;Council,2013
3. Development of non-fused acceptor materials with 3D-Interpenetrated structure for stable and efficient organic solar cells;Hassan;Mater. Sci. Semicond. Process.,2022
4. In silico designing of efficient C-shape non-fullerene acceptor molecules having quinoid structure with remarkable photovoltaic properties for high-performance organic solar cells;Adnan;Optik,2021
5. Designing 2D fused ring materials for small molecules organic solar cells;Khalid;Computational and Theoretical Chemistry,2020
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