Dr Kieran Aggett
Timau a rolau for Kieran Aggett
Cyhoeddiad
2026
- Mediavilla-Madrigal, S. et al., 2026. Rationalizing the onset and extent of β-PdZn formation as a function of Pd:Zn ratio and its effect on methanol yield for CO2 hydrogenation studied under in situ and operando conditions. ACS Catalysis (10.1021/acscatal.6c03224)
- Zhao, Y. et al., 2026. Bridging liquid and gas phase catalysis for abiotic CO 2 conversion to prebiotic organics over mesoporous silica‐supported Ni–Co catalysts. Advanced Synthesis & Catalysis 368 (11) e70531. (10.1002/adsc.70531)
- Leishman, C. et al., 2026. On-board methanol production using a hollow fibre-based reactor: modelling and experimental validation. Chemical Engineering Journal 536 175992. (10.1016/j.cej.2026.175992)
- Chalmers, A. T. et al., 2026. Alumina supported Cu nanoparticles derived from MOF crystallites for CO2 hydrogenation. Catalysis Science & Technology 16 (5), pp.1690-1703. (10.1039/d5cy01235j)
- Lawes, N. et al. 2026. The important role of alloy–oxide interfaces in controlling methanol formation in CO2 hydrogenation. ACS Catalysis 16 (3), pp.2209-2221. (10.1021/acscatal.5c06703)
2025
2024
2022
2021
Erthyglau
- Mediavilla-Madrigal, S. et al., 2026. Rationalizing the onset and extent of β-PdZn formation as a function of Pd:Zn ratio and its effect on methanol yield for CO2 hydrogenation studied under in situ and operando conditions. ACS Catalysis (10.1021/acscatal.6c03224)
- Zhao, Y. et al., 2026. Bridging liquid and gas phase catalysis for abiotic CO 2 conversion to prebiotic organics over mesoporous silica‐supported Ni–Co catalysts. Advanced Synthesis & Catalysis 368 (11) e70531. (10.1002/adsc.70531)
- Leishman, C. et al., 2026. On-board methanol production using a hollow fibre-based reactor: modelling and experimental validation. Chemical Engineering Journal 536 175992. (10.1016/j.cej.2026.175992)
- Chalmers, A. T. et al., 2026. Alumina supported Cu nanoparticles derived from MOF crystallites for CO2 hydrogenation. Catalysis Science & Technology 16 (5), pp.1690-1703. (10.1039/d5cy01235j)
- Lawes, N. et al. 2026. The important role of alloy–oxide interfaces in controlling methanol formation in CO2 hydrogenation. ACS Catalysis 16 (3), pp.2209-2221. (10.1021/acscatal.5c06703)
- 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)
- Sun, Z. et al. 2025. Tailoring an Fe-Ov-Ce triggered phase-reversible oxygen carrier for intensified chemical looping CO2 splitting. Carbon Energy 7 (9) e70011. (10.1002/cey2.70011)
- 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)
- Gao, S. et al., 2025. Ultra-fast self-powered heterojunction blue-light photodetector based on Boronate-Ester-Linked COF-5. Angewandte Chemie International Edition 64 (36) e202502364. (10.1002/anie.202502364)
- Aggett, K. J. et al. 2025. The simultaneous total oxidation of toluene, propene and CO environmental pollutants using bimetallic AU‐PT/ZrO2/UVM‐7 catalysts. ChemCatChem 17 (7) e202401462. (10.1002/cctc.202401462)
- Carter, J. H. et al. 2024. Origin of carbon monoxide formation in the oxidative dehydrogenation of propane using carbon dioxide. ACS Catalysis 14 (15), pp.11881-11892. (10.1021/acscatal.4c02628)
- 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. 2024. Zn loading effects on the selectivity of PdZn catalysts for CO2 hydrogenation to methanol. Catalysis Letters 154 (4), pp.1603-1610. (10.1007/s10562-023-04437-5)
- Lawes, N. et al. 2022. Methanol synthesis from CO2 and H2 using supported Pd alloy catalysts.. Faraday Discussions (10.1039/D2FD00119E)
- Aggett, K. et al. 2021. The influence of precursor on the preparation of CeO2 catalysts for the total oxidation of the volatile organic compound propane. Catalysts 11 (12) 1461. (10.3390/catal11121461)
Gosodiad