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Peter Matthews' Outputs (3)

Juggling Optoelectronics and Catalysis: The Dual Talents of Bench Stable 1,4‐Azaborinines (2023)
Journal Article
van Beek, C. M., Swarbrook, A. M., Creissen, C. E., Hawes, C. S., Gazis, T. A., & Matthews, P. D. (2023). Juggling Optoelectronics and Catalysis: The Dual Talents of Bench Stable 1,4‐Azaborinines. Chemistry - A European Journal, 30(8), Article e202301944. https://doi.org/10.1002/chem.202301944

Boron‐ and nitrogen‐doped polycyclic aromatic hydrocarbons (B‐PAHs) have established a strong foothold in the realm of organic electronics. However, their catalytic potential remains largely untapped. In this study, we synthesise and characterise two... Read More about Juggling Optoelectronics and Catalysis: The Dual Talents of Bench Stable 1,4‐Azaborinines.

Colloidal III-V quantum dots: a synthetic perspective (2023)
Journal Article
Gazis, T. A., Cartlidge, A. J., & Matthews, P. D. (2023). Colloidal III-V quantum dots: a synthetic perspective. Journal of Materials Chemistry C, 11(12), 3926-3935. https://doi.org/10.1039/d2tc05234b

With the advent of stricter environmental regulation, quantum dots based on cadmium, lead and other heavy metals have become anathema. III–V semiconductors constitute a promising alternative because they not only match but indeed surpass the optoelec... Read More about Colloidal III-V quantum dots: a synthetic perspective.

55 Cancri e's occultation captured with CHEOPS (2023)
Journal Article
Matthews, P., Demory, B.-O., Sulis, S., Valdes, E., Brandeker, A., Billot, N., Fortier, A., Hoyer, S., Sousa, S., Heng, K., Lendl, M., Krenn, A., Morris, B., Patel, J., Alibert, Y., Alonso, R., Delrez, L., Anglada, G., Broeg, C., Buder, M., …Walton, N. (2023). 55 Cancri e's occultation captured with CHEOPS. Astronomy & Astrophysics, https://doi.org/10.1051/0004-6361/202244894

Past occultation and phase-curve observations of the ultra-short period super-Earth 55 Cnc e obtained at visible and infrared wavelengths have been challenging to reconcile with a planetary reflection and emission model. In this study, we analyse a s... Read More about 55 Cancri e's occultation captured with CHEOPS.