Artificial light-harvesting systems based on supramolecular self-assembly multi-component metallogels.
basic_science · Level V
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- Record sourced from PubMed, PMID 36458862.
- Also identified by DOI 10.1039/d2sm01493a.
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Abstract
This paper proposes a strategy for fabricating new artificial light-harvesting systems (ALHSs) based on supramolecular multi-component metallogels. Al<sup>3+</sup> was introduced into a solution of an acylhydrazone compound (L) in DMSO or DMF to form the L-Al<sup>3+</sup> assembly. After adding Al<sup>3+</sup> to the L solution, a noticeable blue shift appeared in the fluorescence spectra of L. Moreover, L could form a gel (L-B-gel) with 1,3:2,4-dibenzylidene sorbitol (B) in a DMSO-H<sub>2</sub>O binary solution. Finally, we obtained a multi-component metallogel (L-Al<sup>3+</sup>-B-gel) and successfully fabricated two ALHSs (L-Al<sup>3+</sup>/rhodamine 6G (Rh6G) and L-Al<sup>3+</sup>/rhodamine B (RhB)). In these systems, the L-Al<sup>3+</sup> supramolecular assembly acts as the donor, while Rh6G and RhB act as acceptors. Additionally, we confirmed an energy-transfer process from the L-Al<sup>3+</sup> component to Rh6G and RhB separately. The proposed fabrication strategy will facilitate the development of ALHSs.