个人简介
Charl F. J. Faul received his PhD in 2000 from the University of Stellenbosch, South Africa. After working for a year as postdoctoral researcher with Markus Antonietti at the Max-Planck-Institute of Colloids and Interfaces (Potsdam, Germany), he led an independent research group exploring the principles of ionic self-assembly (ISA) until 2004 at the same institute.
He then moved to the School of Chemistry, University of Bristol, where he is currently a Senior Lecturer in Materials Chemistry. Research efforts are focussed on the production of complex functional hierarchical materialsbased on ionic self-assembly, guanine biomotifs and oligo(aniline)s with tunable optoelectronic properties.
Charl has held a visiting professorship in the Molecular Materials group at the Molecular Materials Group, Helsinki University of Technology, hosted by Prof. Dr. Olli Ikkala (2006 – 2010). He then held a prestigious visiting professorship from the Chinese Academy of Sciences (hosted by Prof. Zhixiang Wei, National Centre for Nanoscience and Technology, Beijing, China) in 2012. He was furthermore invited by Prof Xi Zhang (Department of Chemistry, Tsinghua University, Beijing, China) as visiting international lecturer in 2011 and 2012, and visits Tsinghua on a regular basis. Charl recently (October 2013) was appointed as adjunct professor at the Department of Chemistry at Tsinghua University. This is a 3-year appointment, which has been extended for an additional 3 years until 2019. He is co-PI and member of the management committee of the £12M EPSRC-funded Bristol Centre for Functional Nanomaterials.
He is also responsible for all graduate recruitment in the School of Chemistry in his role Director of Graduate Recruitment (since August 2013).
近期论文
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Faul, CFJ, 2014, ‘Ionic self-assembly for functional hierarchical nanostructured materials’. Accounts of Chemical Research, vol 47., pp. 3428-3438
Ahmed, R, Patra, SK, Hamley, I, Manners, I & Faul, CFJ, 2013, ‘Tetragonal and Helical Morphologies from Polyferrocenylsilane Block Polyelectrolytes via Ionic Self-Assembly’. Journal of the American Chemical Society, vol 135., pp. 2455 ? 2458
Liao, Y, Weber, J & Faul, CFJ, 2014, ‘Conjugated microporous polytriphenylamine networks’. Chemical Communications, vol 50., pp. 8002-8005
Hu, Y, Miles, B, Ho, D, Taverne, M, Chen, L, Gersen, H, Rarity, J & Faul, CF, 2016, ‘Towards Direct Laser Writing of Actively Tuneable Three-Dimensional Photonic Crystals’. Advanced Optical Materials.
Liao, Y, Weber, J, Mills, B, Ren, Z & Faul, CF, 2016, ‘Highly Efficient and Reversible Iodine Capture in Hexaphenylbenzene-Based Conjugated Microporous Polymers’. Macromolecules, vol 49., pp. 6322?6333
Echue, G, Hamley, I, Lloyd-Jones, G & Faul, CF, 2016, ‘Chiral Perylene Materials by Ionic Self-Assembly’. Langmuir, vol 32., pp. 9023-9032
Mills, BM, Fey, N, Marszalek, T, Pisula, W, Rannou, P & Faul, CF, 2016, ‘Exploring redox states, doping and ordering of electroactive star-shaped oligo(aniline)s’. Chemistry - A European Journal.
Dane, TG, Bartenstein, JE, Sironi, B, Mills, BM, Bell, OA, MacDonald, JE, Arnold, T, Faul, CFJ & Briscoe, WH, 2016, ‘Influence of solvent polarity on the structure of drop-cast electroactive tetra(aniline)-surfactant thin films’. Physical Chemistry Chemical Physics, vol 18., pp. 24498-24505
Dicker, M, Weaver, P, Rossiter, J, Bond, I & Faul, CF, 2016, ‘Biomimetic photo-actuation: progress and challenges’. in: Raúl Martín-Palma, Akhlesh Lakhtakia, Mato Knez (eds) Bioinspiration, Biomimetics, and Bioreplication VI 2016. SPIE
Bell, OA, Wu, G, Haataja, JS, Broemmel, F, Fey, N, Seddon, AM, Harniman, RL, Richardson, RM, Ikkala, O, Zhang, X & Faul, CFJ, 2015, ‘Self-assembly of a functional oligo(aniline)-based amphiphile into helical conductive nanowires’. Journal of the American Chemical Society, vol 137., pp. 14288?14294
Thomas, JO, Andrade, HD, Mills, B, Fox, N, Hoerber, H & Faul, CF, 2015, ‘Imaging the Predicted Isomerism of Oligo(aniline)s: A Scanning Tunneling Microscopy Study’. Small, vol 11., pp. 3430-3434
Lyu, W, Feng, J, Yan, W & Faul, CF, 2015, ‘Self-assembly of tetra(aniline) nanowires in acidic aqueous media with ultrasonic irradiation’. Journal of Materials Chemistry C, vol 45., pp. 11945-11952