From Molecular Design to Application Potential: An All-Visible-Light Diarylethene Photoswitch with Near-Quantitative Photoconversion and High Photostability
Juraj Filo, Peter Magdolen, Ivica Sigmundová, Andrea Bianco, Davide Giughello, Matilde Danielli, Natasza Pardus, Adam Szukalski, Lech Sznitko, Ermes Peci, Maurizio Canepa, Šimon Budzák, Manjeet Singh, Chavdar Slavov, Marek CigáňAbstract
The development of visible-light photoswitches with high photoconversion efficiency remains a central challenge in advanced molecular photochemistry and is crucial for next-generation optical technologies. Here, we report a rationally engineered benzothiazole-based unsymmetrical dithienylethene (DTE) photoswitch that achieves bistable, near-quantitative interconversion between its open and closed states. The closed form exhibits an extraordinary thermal half-life exceeding 10,000 years, while the molecule shows no detectable photofatigue over 100 switching cycles. The molecular scaffold enables fully visible-light operation using violet and orange excitation, addressing a long-standing limitation of diarylethene systems. Comprehensive characterization─combining ultrafast spectroscopy, spectroscopic ellipsometry, and quantum-chemical simulations─reveals the mechanistic origins of its exceptional performance. Finally, we demonstrate the molecule’s potential in rewritable holography, anticounterfeiting, and all-optical switching, highlighting its promise as a robust platform for future light-driven information processing and authentication features.