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Professor Peter Raymond Slater Professor Peter R.
Slater is Professor in Materials Chemistry at the University of Birmingham and Co Director of the Birmingham Centre for Energy Storage. He has more than 20 years research experience in the area of solid state/materials chemistry, ranging from solid oxide fuel cells to high temperature superconductors. In these areas he has published more than 150 papers in scientific journals, and has written more than 15 invited review articles. batteries and fuel cells), including the use of novel doping strategies to stabilize new systems/improve materials performance. He is also active in promoting research into new energy technologies to the general public, and in schools. Peter Slater obtained a 1st class BSc degree in Chemistry at the University of Birmingham in 1987, before completing his PhD in the area of high temperature superconductivity. He spent a further 5 years at Birmingham as a postdoctoral research fellow, before moving to the University of St Andrews firstly as a postdoctoral research fellow and then as a temporary lecturer. In 1998 he was appointed as a lecturer in inorganic chemistry at the University of Surrey, and was promoted to senior lecturer in 2004. In 2008 he moved to the University of Birmingham, and was promoted to Reader in Materials Chemistry in 2010, and then Professor in louis vuitton alma vernis yellow 2012. In summer 2017, he was appointed louis vuitton shoes ankle boots as Co Director of the Birmingham Centre for Energy Storage. He has more than louis vuitton shoes for sale 20 years research experience in the area of solid state/materials chemistry, ranging from solid oxide fuel cells to high temperature superconductors. In these areas he has published more than 150 papers in scientific journals, and has written more than 15 invited review articles. His present research is focusing mainly on the development of novel ionic and mixed conductors for energy storage and conversion applications, including the use of novel doping strategies to stabilize new systems/improve materials performance. Particular international recognition has been received for his work on novel anion doping strategies, and structural studies of superconductor and fuel cell materials. He is also active in promoting research into new energy technologies to the general public, and in schools. Member of the STFC ISIS Crystallography user group (2012 present) Member of the STFC ISIS facility Diffraction Panel, 2007 2011. Member of the EPSRC College of Referees. Member of the Organising Committee for Materials Chemistry 10, University of Manchester 2011. Invited International Expert for the UK Government organized Carbon Cars: Exploring the Challenge of bringing Electric louis vuitton bracelet azur Vehicles to Market International Experts Meeting BERR, London, 27 28 Oct. 2008. Member of the EPSRC Functional Materials Panel 2001, 2002 Secretary of the RSC Solid State Chemistry Group 2004 2006. Member of the Organising Committee for SSPC 13 (St. Andrews, 2006), Faraday Discussions (Atomic Transport and Defect Phenomena in Solids, Surrey, 2006). 6, 871 875. (2008), Atomic scale mechanistic features of oxide ion conduction in apatite germanates;; Chem Commun 715 717. (2011); Elucidation of Oxygen Defects and Novel Transport Mechanisms in Apatite Fast Ion Conductors: Combined 17O NMR and Modelling Studies; Angew. (2013) Investigation into the effect of Si doping on the performance of Sr1 yCayMnO3 SOFC cathode materials; J. M. Porras Vazquez, E. R. Losilla, P. J. Keenan, C. A. Hancock, T. F. Kemp, J.
V. Hanna, Peter R. Slater; Dalton Trans 42, 5421 5429.
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