Staff profile
Overview
https://apps.dur.ac.uk/biography/image/1895
Dr Chunyong Li
Senior Experimental Officer
| Affiliation |
|---|
| Senior Experimental Officer in the Department of Physics |
Publications
Journal Article
- Unraveling the Role of Triplet-Triplet Annihilation and Photodegradation in Difluoroboron-Based Organic Laser Gain Materials.Kuila, S., Miranda-Salinas, H., Li, C., Pridmore, N. E., Bryce, M. R., Marian, C. M., & Monkman, A. P. (2025). Unraveling the Role of Triplet-Triplet Annihilation and Photodegradation in Difluoroboron-Based Organic Laser Gain Materials. Angewandte Chemie (International Ed. In English). Advance online publication, Article e202509535. https://doi.org/10.1002/anie.202509535
- Exploring the Early Time Behavior of the Excited States of an Archetype Thermally Activated Delayed Fluorescence MoleculeFranca, L., Danos, A., Saxena, R., Kuila, S., Stavrou, K., Li, C., Wedler, S., Köhler A., & Monkman, A. P. (2024). Exploring the Early Time Behavior of the Excited States of an Archetype Thermally Activated Delayed Fluorescence Molecule. The Journal of Physical Chemistry Letters, 15(6), 1734-1740. https://doi.org/10.1021/acs.jpclett.4c00030
- Rigid and planar π-conjugated molecules leading to long-lived intramolecular charge-transfer states exhibiting thermally activated delayed fluorescenceKuila, S., Miranda-Salinas, H., Eng, J., Li, C., Bryce, M. R., Penfold, T. J., & Monkman, A. P. (2024). Rigid and planar π-conjugated molecules leading to long-lived intramolecular charge-transfer states exhibiting thermally activated delayed fluorescence. Nature Communications, 15, Article 9611. https://doi.org/10.1038/s41467-024-53740-1
- Covalently linked pyrene antennas for optically dense yet aggregation-resistant light-harvesting systemsSalah, L., Makhseed, S., Ghazal, B., Abdel Nazeer, A., Etherington, M. K., Ponseca Jr., C. S., Li, C., Monkman, A. P., Danos, A., & Shuaib, A. (2023). Covalently linked pyrene antennas for optically dense yet aggregation-resistant light-harvesting systems. Physical Chemistry Chemical Physics, 25(36), 24878-24882. https://doi.org/10.1039/d3cp02586a
- The Effect of Imide Substituents on the Excited State Properties of Perylene Diimide DerivativesAksoy, E., Danos, A., Li, C., Monkman, A., & Varlikli, C. (2022). The Effect of Imide Substituents on the Excited State Properties of Perylene Diimide Derivatives. Turkish Journal of Science and Technology, 17(1), 11-21. https://doi.org/10.55525/tjst.952823
- Silylethynyl Substitution for Preventing Aggregate Formation in Perylene DiimidesAksoy, E., Danos, A., Li, C., Monkman, A. P., & Varlikli, C. (2021). Silylethynyl Substitution for Preventing Aggregate Formation in Perylene Diimides. Journal of Physical Chemistry C, 125(23), 13041-13049. https://doi.org/10.1021/acs.jpcc.1c03131
- The Critical Role of nπ* States in the Photophysics and Thermally Activated Delayed Fluorescence of Spiro Acridine-AnthracenoneGomes Franca, L., Long, Y., Li, C., Danos, A., & Monkman, A. (2021). The Critical Role of nπ* States in the Photophysics and Thermally Activated Delayed Fluorescence of Spiro Acridine-Anthracenone. Journal of Physical Chemistry Letters, 12(5), 1490-1500. https://doi.org/10.1021/acs.jpclett.0c03314
- Excited State Dynamics of Thermally Activated Delayed Fluorescence from an Excited State Intramolecular Proton Transfer SystemLong, Y., Mamada, M., Li, C., dos Santos, P. L., Colella, M., Danos, A., Adachi, C., & Monkman, A. (2020). Excited State Dynamics of Thermally Activated Delayed Fluorescence from an Excited State Intramolecular Proton Transfer System. Journal of Physical Chemistry Letters, 11(9), 3305-3312. https://doi.org/10.1021/acs.jpclett.0c00498