Professor Adrian Porch
Projects as PI
- Low cost scalar analyser (14/10/2013 - 13/02/2014)
- Magnetic characterization and micromagnetic simulation of nanowire arrays (01/07/2009 - 30/06/2011)
- Microwave characterisation of semiconducting metal oxides (01/07/2009 - 30/06/2012)
- Microwave heating for selective laser melting (01/04/2017 - 30/09/2017)
- Microwave measurement system (30/09/2015 - 30/09/2015)
Projects as Co-Investigator
- Accelerate East (01/06/2018 - 31/12/2022)
- ACCELERATE East & West (01/06/2018 - 31/12/2022)
- Accelerate West (01/06/2018 - 31/12/2022)
- A lateral flow essay for detection of C.Difficile (01/09/2017 - 31/08/2018)
- A microwave powered DNA extraction molecule (01/10/2019 - 01/08/2023)
Research Datasets
- An in-situ study of the thermal decomposition of 2,2′-azobis(2-methylpropionitrile) radical chemistry using a dual mode EPR resonator: data - Magri G, Barter M, Fletcher-Charles J, et al. (2022). Cardiff University. 10.17035/d.2022.0226041954. Microwave/RF power electronics EPR Polymer explosives Free radicals
- A novel dual mode X-band EPR resonator for rapid in situ microwave heating - data - Folli A, Choi H, Barter M, et al. (2019). Cardiff University. 10.17035/d.2019.0088702672. Catalysis and Applied Catalysis Chemical reaction dynamics and mechanisms EPR Microwave analysis RF & Microwave Devices
- Broadband complex permittivity of nanodiamond particles. - Cuenca JA, Thomas E, Mandal S, et al. (2015). Cardiff University. 10.17035/d.2015.100125. Materials Characterisation Electrical Properties Microwave analysis
- Data Collected During Simultaneous Neutron Powder Diffraction and Microwave Characterisation at Elevated Temperatures - Barter M, Smith G, Yang S, et al. (2021). Cardiff University. 10.17035/d.2021.0140099870. Microwave analysis Neutron Scattering
- Data produced during the development of a second-generation dual-mode X-band EPR resonator for rapid in-situ microwave heating - Barter M, Magri G, Harari J, et al. (2021). Cardiff University. 10.17035/d.2021.0139141355. EPR Microwave analysis