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Tay, J., Parkes, M. A., Addison, K., Chan, Y., Zhang, L., Hailes, H. C., . . . Fielding, H. H. (2017). The Effect of Conjugation on the Competition between Internal Conversion and Electron Detachment: A Comparison between Green Fluorescent and Red Kaede Protein Chromophores. J Phys Chem Lett, 765-771. doi:10.1021/acs.jpclett.7b00174
Butorac, J., Wilson, E. L., Fielding, H. H., Brown, W. A., & Minns, R. S. (2016). A RAIRS, TPD and femtosecond laser-induced desorption study of CO, NO and coadsorbed CO + NO on Pd(111). RSC ADVANCES, 6 (70), 66346-66359. doi:10.1039/c6ra13722a
Parkes, M. A., Phillips, C., Porter, M. J., & Fielding, H. H. (2016). Controlling electron emission from the photoactive yellow protein chromophore by substitution at the coumaric acid group. Physical chemistry chemical physics : PCCP, 18 (15), 10329-10336.
Payne, D. T., Zhang, Y., Pang, C. L., Fielding, H. H., & Thornton, G. (2016). Coverage-dependent two-photon photoexcitation at the H2O/TiO2 interface. SURFACE SCIENCE, 652, 189-194. doi:10.1016/j.susc.2016.02.018
Neville, S. P., Kirkby, O. M., Kaltsoyannis, N., Worth, G. A., & Fielding, H. H. (2016). Identification of a new electron-transfer relaxation pathway in photoexcited pyrrole dimers. NATURE COMMUNICATIONS, 7, ARTN 11357. doi:10.1038/ncomms11357
McLaughlin, C., Assmann, M., Parkes, M. A., Woodhouse, J. L., Lewin, R., Hailes, H. C., . . . Fielding, H. H. (2016). ortho and para chromophores of green fluorescent protein: controlling electron emission and internal conversion. Chem. Sci.. doi:10.1039/C6SC03833F
Reid, D. T., Heyl, C. M., Thomson, R. R., Trebino, R., Steinmeyer, G., Fielding, H. H., . . . Cerullo, G. (2016). Roadmap on ultrafast optics. Journal of Optics, 18 (9), 093006. doi:10.1088/2040-8978/18/9/093006
Kirkby, O. M., Sala, M., Balerdi, G., de Nalda, R., Banares, L., Guerin, S., & Fielding, H. H. (2015). Comparing the electronic relaxation dynamics of aniline and d(7)-aniline following excitation at 272-238 nm. PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 17 (25), 16270-16276. doi:10.1039/c5cp01883h
Mooney, C. R. S., Parkes, M. A., Iskra, A., & Fielding, H. H. (2015). Controlling Radical Formation in the Photoactive Yellow Protein Chromophore. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 54 (19), 5646-5649. doi:10.1002/anie.201500549
Mooney, C. R., Parkes, M. A., Iskra, A., & Fielding, H. H. (2015). Corrigendum: Controlling Radical Formation in the Photoactive Yellow Protein Chromophore. Angewandte Chemie (International ed. in English), 54 (28), 8021-?.
Zhang, Y., Payne, D. T., Pang, C. L., Fielding, H. H., & Thornton, G. (2015). Non-Band-Gap Photoexcitation of Hydroxylated TiO2. JOURNAL OF PHYSICAL CHEMISTRY LETTERS, 6 (17), 3391-3395. doi:10.1021/acs.jpclett.5b01508
Minns, R. S., Lazenby, D. T. C., Hall, F. H. J., Jones, N. J. A., Patel, R., & Fielding, H. H. (2014). A spectroscopic investigation of the ionisation and dissociation decay dynamics of Rydberg states of NO. MOLECULAR PHYSICS, 112 (13), 1808-1815. doi:10.1080/00268976.2013.865809
Mooney, C. R. S., Parkes, M. A., Zhang, L., Hailes, H. C., Simperler, A., Bearpark, M. J., & Fielding, H. H. (2014). Competition between photodetachment and autodetachment of the 21 ππ* state of the green fluorescent protein chromophore anion. Journal of Chemical Physics, 140 (20). doi:10.1063/1.4874643
Sala, M., Kirkby, O. M., Guerin, S., & Fielding, H. H. (2014). New insight into the potential energy landscape and relaxation pathways of photoexcited aniline from CASSCF and XMCQDPT2 electronic structure calculations. PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 16 (7), 3122-3133. doi:10.1039/c3cp54418d
Greenwood, J. B., Miles, J., De Camillis, S., Mulholland, P., Zhang, L., Parkes, M. A., . . . Fielding, H. H. (2014). Resonantly Enhanced Multiphoton Ionization Spectrum of the Neutral Green Fluorescent Protein Chromophore. JOURNAL OF PHYSICAL CHEMISTRY LETTERS, 5 (20), 3588-3592. doi:10.1021/jz5019256
Mooney, C. R. S., Horke, D. A., Chatterley, A. S., Simperler, A., Fielding, H. H., & Verlet, J. R. R. (2013). Taking the green fluorescence out of the protein: dynamics of the isolated GFP chromophore anion. CHEMICAL SCIENCE, 4 (3), 921-927. doi:10.1039/c2sc21737f
Spesyvtsev, R., Underwood, J. G., & Fielding, H. H. (2013). Time-Resolved Photoelectron Spectroscopy for Excited State Dynamics. In R. D. Nalda, L. Bañares (Eds.), Ultrafast Phenomena in Molecular Sciences. Springer Science & Business Media. doi:10.1007/978-3-319-02051-8
Mooney, C. R., Sanz, M. E., McKay, A. R., Fitzmaurice, R. J., Aliev, A. E., Caddick, S., & Fielding, H. H. (2012). Photodetachment spectra of deprotonated fluorescent protein chromophore anions. J Phys Chem A, 116 (30), 7943-7949. doi:10.1021/jp3058349
Penfold, T. J., Spesyvtsev, R., Kirkby, O. M., Minns, R. S., Parker, D. S., Fielding, H. H., & Worth, G. A. (2012). Quantum dynamics study of the competing ultrafast intersystem crossing and internal conversion in the "channel 3" region of benzene. The Journal of chemical physics, 137 (20), 204310-?.
Spesyvtsev, R., Kirkby, O. M., Vacher, M., & Fielding, H. H. (2012). Shedding new light on the role of the Rydberg state in the photochemistry of aniline. PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 14 (28), 9942-9947. doi:10.1039/c2cp41785e
Spesyvtsev, R., Kirkby, O. M., & Fielding, H. H. (2012). Ultrafast dynamics of aniline following 269-238 nm excitation and the role of the S-2(pi 3s/pi sigma*) state. FARADAY DISCUSSIONS, 157, 165-179. doi:10.1039/c2fd20076g
Kirrander, A., Jungen, C., & Fielding, H. H. (2010). Control of ionisation and dissociation by optical pulse trains. PCCP.
McKay, A. R., Sanz, M. E., Mooney, C. R. S., Minns, R. S., Gill, E. M., & Fielding, H. H. (2010). Development of a new photoelectron spectroscopy instrument combining an electrospray ion source and photoelectron imaging. REVIEW OF SCIENTIFIC INSTRUMENTS, 81 (12), ARTN 123101. doi:10.1063/1.3505097
Fielding, H. H., & Nunn, A. D. G. (2010). Femtochemistry and the control of chemical reactivity. In M. Brouard, C. Vallance (Eds.), Tutorials in Molecular Reaction Dynamics. Royal Society of Chemistry.
Fielding, H. H. (2010). Femtosecond Dynamics and Control: From Rydberg Molecules to Photochemistry and Photobiology. EXTREME PHOTONICS AND APPLICATIONS, 19-35. SPRINGER. doi:10.1007/978-90-481-3634-6_2