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Researcher Details
 
Name: Professor J Durrant
Organisation: Imperial College London
Department: Chemistry
Current EPSRC-Supported Research Topics:
Energy Storage Fuel Cell Technologies
Solar Technology

Current EPSRC Support
EP/T028513/1 Application Targeted and Integrated Photovoltaics - Enhancing UK Capability in Solar(C)
EP/R023581/1 ISCF Wave 1: Materials research hub for energy conversion, capture, and storage(C)
Previous EPSRC Support
EP/P02484X/1 SuperSolar Hub Extension(C)
EP/M014797/1 Improved Understanding, Development and Optimisation of Perovskite-based Solar Cells(C)
EP/M023532/1 [Newton] Advancing the efficiency and production potential of excitonic solar cells (APEX), Phase- II(C)
EP/K027468/1 Solar Fuels(P)
EP/J500021/1 Scalable low-cost organic photovoltaic devices(C)
EP/I019278/1 Sustainable Product Engineering Centre for Innovative Functional Industrial Coatings - SPECIFIC(C)
EP/H040218/1 Advancing the efficiency and production potential of Excitonic Solar Cells (APEX)(C)
EP/H046380/1 Nano-structured Catalysts for CO2 Reduction to Fuels(C)
EP/G031088/1 SUPERGEN Excitonic Solar Cell Consortium - MAIN CORE(C)
EP/F056710/1 Self-organized nanostructures and transparent conducting electrodes for low cost scaleable organic photovoltaic devices(C)
EP/E036341/1 High-efficiency Hybrid Solar Cells for Micro-generation(C)
EP/F00270X/1 New and Renewable Solar Routes to Hydrogen Energy(C)
EP/E035175/1 Metal substrate mounted flexible dye sensitised semiconductor solar cells(P)
EP/E031471/1 SONSEUROCORES - Self Organised Hybrid Devices (SOHYD)(C)
EP/C541839/1 PLATFORM: Molecular Engineering Rules in Functional Nanoscale Assemblies(C)
GR/T26559/01 The SUPERGEN Excitonic Solar Cells Consortium(C)
GR/S25586/01 Light driven oxygen scavenging by polymer/titania nanocomposite films(R)
GR/S25579/01 Light driven oxygen scavenging by polymer/titania nanocomposite films(P)
GR/R59960/01 Nanomaterials(C)
GR/R02368/01 Improved Routes To Nanocrystalline Metal Oxide Films For Dye Sensitised Solar Cells and Related Applications(P)
GR/R00586/01 Improved Routes To Nanocrystalline Metal Oxide Films For Dye Sensitised Solar Cells and Related Applications(C)
GR/R10547/01 Plastic-Encapsulated, Dye-Sensitised Photovoltaic Cells(P)
GR/N34772/01 ELECTRON TRANSFER AND TRANSPORT IN SOLID STATE DYE SENSITISED PHOTOVOLTAIC CELLS(P)
GR/M69586/01 SUBSTITUTED PHTHALOCYANINES: SYNTHESIS REDOX CHEMISTRY AND APPLICATION TO PHOTOELECTROCHEMICAL SOLAR CELLS(C)
GR/M72135/01 THE ROLE OF TRAP STATES IN NANOCRYSTALLINE TIO2 ELECTRONIC DEVICES(C)
GR/L10963/01 DESIGN CRITERIA FOR THE SEMICONDUCTOR/SENSITISER INTERFACE IN NOVEL/NANOCRYSTALLINE PHOTOVOLTAIC DEVICES(P)
Key: (P)=Principal Investigator, (C)=Co-Investigator, (R)=Researcher Co-Investigator