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Researcher Details
 
Name: Professor RW Joyner
Organisation: Nottingham Trent University
Department: Chemistry and Physics
Current EPSRC-Supported Research Topics:

Current EPSRC Support
There is no current EPSRC Support
Previous EPSRC Support
GR/P03056/01 DTA - Nottingham Trent University(C)
GR/M09964/01 BIOMIMETIC NANOCATALYSTS FOR THE SYNTHESIS OF ACRYLAMIDE(P)
GR/M09902/01 IMPROVED CATALYTIC PROCESS FOR OXIDATION OF CYCLODODECANE TO CYCLODODECANOL(C)
GR/J86964/02 PREDICTIVE MODELLING OF CATALYST PREPARATION AND CATALYTIC REACTIVITY(C)
GR/K28701/01 ZEOLITES AS REDOX CATALYSTS(P)
GR/K33309/01 IN-SITU STUDIES OF CATALYSIS BY X-RAY ABSORPTION SPECTROSCOPY(P)
GR/J86964/01 PREDICTIVE MODELLING OF CATALYST PREPARATION AND CATALYTIC REACTIVITY(C)
GR/J37546/01 FIRST PRINCIPLES STUDY OF OXYGEN ADSORPTION AND EXCHANGE AT OXIDE CATALYST SURFACES(C)
GR/H98601/01 ELECTRON MICROSCOPY STUDIES OF CATALYSTS USING AN EX-SITU GAS REACTION CELL(C)
GR/H68482/01 THE OPTIMUM CATALYST FOR THE SELECTIVE REDUCTION OF NITROGEN OXIDES BY HYDROCARBONS(P)
GR/H73479/01 A MULIT USER SYSTEM FOR 'IN SITU' EXAFS ANALYSIS OF CATALYST SAMPLES(P)
GR/G32830/01 SELECTIVE PRODUCTION OF OXYGENATED CHEMICALS.(P)
GR/G08491/01 STRUCTURAL STUDIES OF HETEROGENEOUS CATALYSIS USING X-RAY ABSORPTION(P)
GR/F45677/01 SCHOTTKY BARRIER THEORY OF METAL/OXIDE INTERACTIONS INCATALYSIS(P)
GR/H21135/01 MULTI-USER SYSTEM FOR 'IN SITU' EXAFS ANALYSIS OF CATALYST SAMPLES(P)
GR/F39409/01 DESIGN OF NOVEL ZEOLITE AND OXIDE CATALYSTS FOR THE SYNTHESIS AND CONVERSION OF HYDROCARBONS(C)
GR/E95651/01 AUTO-EXHAUST CATALYSIS UNDER LEAN BURN CONDITIONS(P)
GR/E58595/01 CATALYST DESIGN BY THE METHODS OF SURFACE SCIENCE(P)
Key: (P)=Principal Investigator, (C)=Co-Investigator, (R)=Researcher Co-Investigator