| Literature DB >> 34002911 |
Jinwei Zhao1, Junyu Ren1, Guang Zhang1, Ziqiang Zhao1, Shiyong Liu2, Wandong Zhang1, Long Chen3.
Abstract
Intermolecular charge transfer (ICT) effect has been widely studied in both small molecules and linear polymers. Covalently-bonded donor-acceptor pairs with tunable bandgaps and photoelectric properties endow these materials with potential applications in optoelectronics, fluorescent bioimaging, and sensors, etc. However, owing to the lack of charge transfer pathway or effective separation of charge carriers, unfavorable charge recombination gives rise to inevitable energy loss. Covalent organic frameworks (COFs) can be mediated with various geometry- and property-tailored building blocks, where donor (D) and acceptor (A) segments are connected by covalent bonds and can be finely arranged to form highly ordered networks (namely D-A COFs). The unique structural features of D-A COFs render the formation of segregated D-A stacks, thus provides pathways and channels for effective charge carriers transport. This minireview highlights the significant progress on D-A COFs over the past decade with emphasis on design principles, growing structural diversities, and promising application potentials.Entities:
Keywords: Covalent Organic Frameworks; Molecular Design; Optoelectronics; Photocatalysis; donor-acceptor
Year: 2021 PMID: 34002911 DOI: 10.1002/chem.202101135
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236