Isla Gow
Timau a rolau for Isla Gow
Cydymaith Ymchwil
Cemeg
Cyhoeddiad
2025
- Smith, L. R. et al. 2025. Atom-by-atom assembly reveals structure–performance control in PdCu catalysts for CO 2 hydrogenation to methanol. Chemical Science 47 , pp.22554-22564. (10.1039/d5sc06681f)
- Smith, L. R. et al. 2025. Direct formation of the atomic Pd-ZnO interface by magnetron sputtering primed for methanol production from CO2. ACS Catalysis 15 (17), pp.15502-15508. (10.1021/acscatal.5c04822)
2024
- Medina, J. C. et al. 2024. Influence of Pd, Pt and Au nanoparticles in the photocatalytic performance of N-TiO 2 support under visible light. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences 382 (2282) 20230271. (10.1098/rsta.2023.0271)
- Ding, C. et al., 2024. Regeneration of copper catalysts mediated by molybdenum-based oxides. Journal of Energy Chemistry 95 , pp.618-625. (10.1016/j.jechem.2024.04.007)
- Lawes, N. et al. 2024. CO2 hydrogenation to methanol on intermetallic PdGa and PdIn catalysts and the effect of Zn co-deposition. Applied Catalysis A: General 679 119735. (10.1016/j.apcata.2024.119735)
2023
- Gow, I. 2023. New trimetallic nanoparticles as catalysts for the conversion of carbon dioxide to renewable fuels. PhD Thesis , Cardiff University.
2022
- Lawes, N. et al. 2022. Methanol synthesis from CO2 and H2 using supported Pd alloy catalysts.. Faraday Discussions (10.1039/D2FD00119E)
- Bowker, M. et al. 2022. The critical role of βPdZn alloy in Pd/ZnO catalysts for the hydrogenation of carbon dioxide to methanol. ACS Catalysis 12 (9), pp.5371-5379. (10.1021/acscatal.2c00552)
- Crawley, J. W. M. et al. 2022. Heterogeneous trimetallic nanoparticles as catalysts. Chemical Reviews 122 (6), pp.6795-6849. (10.1021/acs.chemrev.1c00493)
2020
- Liu, S. et al., 2020. Probing composition distributions in nanoalloy catalysts with correlative electron microscopy. Journal of Materials Chemistry A 8 , pp.15725-15733. (10.1039/D0TA00334D)
Articles
- Smith, L. R. et al. 2025. Atom-by-atom assembly reveals structure–performance control in PdCu catalysts for CO 2 hydrogenation to methanol. Chemical Science 47 , pp.22554-22564. (10.1039/d5sc06681f)
- Smith, L. R. et al. 2025. Direct formation of the atomic Pd-ZnO interface by magnetron sputtering primed for methanol production from CO2. ACS Catalysis 15 (17), pp.15502-15508. (10.1021/acscatal.5c04822)
- Medina, J. C. et al. 2024. Influence of Pd, Pt and Au nanoparticles in the photocatalytic performance of N-TiO 2 support under visible light. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences 382 (2282) 20230271. (10.1098/rsta.2023.0271)
- Ding, C. et al., 2024. Regeneration of copper catalysts mediated by molybdenum-based oxides. Journal of Energy Chemistry 95 , pp.618-625. (10.1016/j.jechem.2024.04.007)
- Lawes, N. et al. 2024. CO2 hydrogenation to methanol on intermetallic PdGa and PdIn catalysts and the effect of Zn co-deposition. Applied Catalysis A: General 679 119735. (10.1016/j.apcata.2024.119735)
- Lawes, N. et al. 2022. Methanol synthesis from CO2 and H2 using supported Pd alloy catalysts.. Faraday Discussions (10.1039/D2FD00119E)
- Bowker, M. et al. 2022. The critical role of βPdZn alloy in Pd/ZnO catalysts for the hydrogenation of carbon dioxide to methanol. ACS Catalysis 12 (9), pp.5371-5379. (10.1021/acscatal.2c00552)
- Crawley, J. W. M. et al. 2022. Heterogeneous trimetallic nanoparticles as catalysts. Chemical Reviews 122 (6), pp.6795-6849. (10.1021/acs.chemrev.1c00493)
- Liu, S. et al., 2020. Probing composition distributions in nanoalloy catalysts with correlative electron microscopy. Journal of Materials Chemistry A 8 , pp.15725-15733. (10.1039/D0TA00334D)
Thesis
- Gow, I. 2023. New trimetallic nanoparticles as catalysts for the conversion of carbon dioxide to renewable fuels. PhD Thesis , Cardiff University.