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Published on: August 19, 2021
Two-photon spectroscopy of cyclometalated iridium complexes
Robert M Edkins1, Sylvia L Bettington, Andrés E Goeta
1Department of Chemistry, Durham University, South Road, Durham, UK, DH1 3LE.
New iridium complexes show strong two-photon absorption (TPA) for biological imaging. A designed complex achieved a 44 GM cross-section at 800 nm, enhancing potential applications.
Area of Science:
- Inorganic Chemistry
- Photophysics
- Materials Science
Background:
- Cyclometalated iridium complexes are explored for their photophysical properties.
- Two-photon absorption (TPA) is crucial for advanced imaging techniques, particularly in biological applications.
- Optimizing TPA cross-sections at biologically relevant wavelengths is an ongoing research goal.
Purpose of the Study:
- To measure and compare the TPA spectra of cyclometalated iridium complexes.
- To design, synthesize, and characterize a novel iridium complex with enhanced TPA properties.
- To investigate the photophysical behavior of the new complex for potential applications.
Main Methods:
- Spectroscopic measurement of near-infrared two-photon absorption (TPA) spectra.
- Synthesis and structural characterization of a new cyclometalated iridium complex.
- Comprehensive photophysical characterization including TPA cross-section determination.
Main Results:
- Several cyclometalated iridium complexes were analyzed, showing TPA cross-sections around 20 GM at 800 nm.
- A newly designed iridium complex demonstrated a significantly increased TPA cross-section of 44 GM at 800 nm.
- Detailed photophysical data for the enhanced complex were obtained and are presented.
Conclusions:
- Cyclometalated iridium complexes are promising candidates for TPA applications.
- The designed iridium complex exhibits superior TPA performance at a biologically relevant wavelength.
- This advancement offers new possibilities for advanced optical imaging and sensing technologies.
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