Snapshotting the Excited-State Planarization of Chemically Locked N,N'-Disubstituted Dihydrodibenzo[a,c]phenazines
Overview
Affiliations
For deeper understanding of the coupling of electronic processes with conformational motions, we exploit a tailored strategy to harness the excited-state planarization of N,N'-disubstituted dihydrodibenzo[a,c]phenazines by halting the structural evolution via a macrocyclization process. In this new approach, 9,14-diphenyl-9,14-dihydrodibenzo[a,c]phenazine (DPAC) is used as a prototype, in which the para sites of 9,14-diphenyl are systematically enclosed by a dialkoxybenzene-alkyl-ester or -ether linkage with different chain lengths, imposing various degrees of constraint to impede the structural deformation. Accordingly, a series of DPAC-n (n = 1-8) derivatives were synthesized, in which n correlates with the alkyl length, such that the strength of the spatial constraint decreases as n increases. The structures of DPAC-1, DPAC-3, DPAC-4, and DPAC-8 were identified by the X-ray crystal analysis. As a result, despite nearly identical absorption spectra (onset ∼400 nm) for DPAC-1-8, drastic chain-length dependent emission is observed, spanning from blue (n = 1, 2, ∼400 nm) and blue-green (n = 3-5, 500-550 nm) to green-orange (n = 6) and red (n = 7, 8, ∼610 nm) in various regular solvents. Comprehensive spectroscopic and dynamic studies, together with a computational approach, rationalized the associated excited-state structure responding to emission origin. Severing the linkage for DPAC-5 via lipase treatment releases the structural freedom and hence results in drastic changes of emission from blue-green (490 nm) to red (625 nm), showing the brightening prospect of these chemically locked DPAC-n in both fundamental studies and applications.
Direct flipping dynamics and quantized enrichment of chirality at single-molecule resolution.
Hu W, Zhang Z, Xiong W, Li M, Yan Y, Yang C Sci Adv. 2024; 10(28):eado1125.
PMID: 38996014 PMC: 11244442. DOI: 10.1126/sciadv.ado1125.
Zhang Z, Wang Q, Zhang X, Mei J, Tian H JACS Au. 2024; 4(5):1954-1965.
PMID: 38818060 PMC: 11134381. DOI: 10.1021/jacsau.4c00187.
Solvation controlled excited-state dynamics in a donor-acceptor phenazine-imidazole derivative.
Shi H, Bao H, Wu G RSC Adv. 2024; 14(24):17071-17076.
PMID: 38808230 PMC: 11130646. DOI: 10.1039/d4ra02417f.
Tuning vibration-induced emission through macrocyclization and catenation.
Xu W, Peng Z, Wu P, Jiang Y, Li W, Wang X Chem Sci. 2024; 15(19):7178-7186.
PMID: 38756822 PMC: 11095381. DOI: 10.1039/d4sc00650j.
Cortes-Villena A, Soriano-Diaz I, Dominguez M, Vidal M, Rojas P, Aliaga C Front Chem. 2023; 11:1292541.
PMID: 38025083 PMC: 10667708. DOI: 10.3389/fchem.2023.1292541.