I am an highly experienced industrial researcher now working with academia and central facilities to provide chemical insight and knowledge to catalysis and materials of industrial relevance at the atomic scale using advanced analytical structural characterisation techniques.Main scientific research areas include: 1. X-Ray based characterisation (EXAFS, XANES, SAXS, XRD, HR-XANES, PDF, Tomography, etc), 2. Neutron based characterisation (INS, Tomography, QENS, Muons, etc) and 3. Laser based characterisation techniques.4. Where appropriate use in situ/operando spectroscopies, combined spectroscopies, time-resolved studies, spatially resolved studies. Development of appropriate in situ cells.Industrial supervisor of multiple sponsored PhD students.Experienced in academic and proprietary utilisation of Central Facility beamlines and techniques.Member of various science advisory panels.Additional keywords: in situ studies, alloys, ceramics, disorder, PGMs, phase transitions, laboratory powder X-ray powder diffraction, Rietveld method, structure-activity relationships, supports, synchrotron radiation, zeolites. In situ structural characterisation of catalysts and materials utilising synchrotron radiation based characterisation and associated techniques.
Ucl
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Honorary Professor, Department Of ChemistryUcl -
Honorary Professor, Department Of ChemistryUcl Sep 2023 - PresentLondon, HarwellUsing Industrial experience and expertise to assist in the progression of the UK Catalysis Hub at Harwell. -
Honorary Research Fellow, School Of ChemistryUniversity Of Glasgow Mar 2023 - Present -
Core ScientistJohnson Matthey 2007 - Mar 2023Reading, HarwellSenior roles and responsibilities leading to specialisation in advanced structural characterisation of industrial catalysts and materials by X-ray, Neutron, Muon and Laser based characterisation techniques.Industrial Supervision of 17 Johnson Matthey sponsored PhD students.Developed links to UK and worldwide Central Facilities for Industrial research purposes.Publication of high quality internal research reports and peer reviewed external publicationssee e.g., Understanding the ZIF-L to ZIF-8 transformation – from fundamentals to fully costed kilogram-scale production. Communications Chemistry 2022 5:18 The Unusual Redox Behaviour of Ceria and its Interaction with Hydrogen. Chem. Mater. 2019, 31, 7744Elucidation of copper environment in a Cu-Cr-Fe oxide catalyst through in situ high-resolution XANES investigation. Phys. Chem. Chem. Phys., 23, 2021, 5888 Monitoring the process of formation of ZnO from ZnO2 using in situ combined XRD/XAS technique. Journal of Physics: Condensed Matter 33, 2021, 2640024D In-Situ Microscopy of Aerosol Filtration in a Wall Flow Filter. Materials 2020, 13, 5676 -
Principal ScientistJohnson Matthey 2005 - Feb 2023Reading, England, United KingdomAdvanced structural characterisation methods in Industrial Catalysis.Core Scientistsee e.g. Crystallite Size Analysis of Supported Platinum Catalysts by XRD. Platinum Metals Rev., 2008, 52, 129Elucidation of structure and the nature of PdO-Pd transformation using in situ PDF and XAS techniques. Phys. Chem. Chem. Phys., 15, 2013, 8555Local Structure and Speciation of Platinum in Fresh and Road aged vehicle emissions catalysts: an X-Ray Absorption Spectroscopic study. Environ. Sci. Technol., 48, 2014, 3658 -
Senior ScientistJohnson Matthey 1992 - 2005Reading, England, United KingdomAnalytical and reactive characterisation of industrially relevant catalysts and materials leading to chemical insight and patent publications.see e.g. Doped Ceria Containing Zeolite Based NH3 SCR Catalyst. WO/2004002611 8th January 2004.Three-Way Catalysts. Fisher. WO 99/34904 15th July 1999. US 6680036 20th Jan 2004.. EP 1044058B 12nd June 2004.Improved Catalyst for use in Fuel Cells as Anode and in Electrolysers or Sensors. EP 0838872A2 29th April 1998. US 59392204. 17th August 1999.Oxygen reduction electrocatalysts in solid polymer fuel cell membrane electrode assemblies. ETSU Contract Report F/02/00038/REP (1997) Harwell, UK -
Research ScientistJohnson Matthey Sep 1989 - Apr 1992Reading, England, United KingdomIntroduction of Molecular Modelling Techniques to the CompanyDeveloping capability within the Powder X-Ray Diffraction Techniquesee e.g. Synthesis and Crystal Structures of ‘Li1.8K0.9M0.75Zr2.25O6.6' (M=Cu, Mg): a Family of Novel Rocksalt-Perovskite Intergrowth Phases. J. Mater. Chem., 6 1996,, 1379 -
Postdoctoral ResearcherThe University Of Edinburgh Oct 1986 - Jul 1989Edinburgh City, Scotland, United KingdomPost Doctoral studies in Inorganic PGM Chemistry. Stabilisation and characterisation of redox active transition metal centres by structurally accommodating macrocycles. Supervisor Prof Martin Schrodersee e.g. Bis(1,4,7 trithiacyclononane)gold dication: a paramagnetic mononuclear gold(II) complex.. Chem., Int. Ed. Engl., 29, 1990, 197Palladium (II)/(III) complexes of triaza macrocycles: synthesis and single crystal x ray structures of [Pd(III)(tacn)2]3+ and [Pd(II)(tacn)(tacnH)]3+ (tacn = 1,4,7 triazacyclononane). J. Chem. Soc., Chem. Commun., 1452 4 1988Stabilization of mononuclear palladium(III). Single crystal x ray structure of the [Pd(L)2]3+ cation (L = 1,4,7 trithiacyclononane). J. Chem. Soc., Chem. Commun., 987 8 1987
Timothy Hyde Education Details
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Chemistry -
Inorganic Chemistry
Frequently Asked Questions about Timothy Hyde
What company does Timothy Hyde work for?
Timothy Hyde works for Ucl
What is Timothy Hyde's role at the current company?
Timothy Hyde's current role is Honorary Professor, Department of Chemistry.
What schools did Timothy Hyde attend?
Timothy Hyde attended Imperial College London, The University Of Edinburgh.
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Timothy Hyde
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