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Projects: Projects for Investigator
Reference Number EP/F047851/1
Title Artificial Photosynthesis: Solar Fuels
Status Completed
Energy Categories Renewable Energy Sources(Solar Energy) 50%;
Hydrogen and Fuel Cells(Fuel Cells) 50%;
Research Types Basic and strategic applied research 100%
Science and Technology Fields BIOLOGICAL AND AGRICULTURAL SCIENCES (Biological Sciences) 40%;
PHYSICAL SCIENCES AND MATHEMATICS (Chemistry) 40%;
ENGINEERING AND TECHNOLOGY (Electrical and Electronic Engineering) 20%;
UKERC Cross Cutting Characterisation Not Cross-cutting 100%
Principal Investigator Professor RJ Cogdell
No email address given
Institute of Biomedical & Life Sciences
University of Glasgow
Award Type Standard
Funding Source EPSRC
Start Date 12 January 2009
End Date 11 April 2013
Duration 51 months
Total Grant Value £1,559,914
Industrial Sectors Chemicals; Energy; Pharmaceuticals and Biotechnology
Region Scotland
Programme Energy : Energy
 
Investigators Principal Investigator Professor RJ Cogdell , Institute of Biomedical & Life Sciences, University of Glasgow (99.996%)
  Other Investigator Professor J (John ) McGrady , Oxford Chemistry, University of Oxford (0.001%)
Dr N Gadegaard , Electronics and Electrical Engineering, University of Glasgow (0.001%)
Dr P Dominy , Institute of Biomedical & Life Sciences, University of Glasgow (0.001%)
Web Site
Objectives
Abstract Aims and Grand Challenges: The development of scaleable, efficient, and low intensity-tolerant solar energy harvesting systems represents one of the greatest scientific challenges today. In this research proposal we propose to explore a bold and innovative approach that uses solar energy to both generate energy and fix carbon dioxide in one step, to produce a type of solar fuel cell which would yield methanol or similar feedstock (this is the long term ~10 year aim). This is an extremelychallenging problem and in this study we will bring to together researchers in Chemistry and Electrical Engineering in Glasgow, with those in existing Bio-energy research (Bacterial Photosynthesis, Plant Molecular Biology) along with the key international groups in this area from the USA, Japan, and Germany, to explore the idea of transferring concepts from natural photosynthesis to solid state devices. In this research we will learn from Photosynthesis how to arrange light harvesting/reaction centre units on a surface in an immobilised environment to assemble highly efficient and broad spectrum light harvesting devices using inorganic/organic chemistry approaches. Therefore by combining research from Chemistry (Model systems, supramolecular chemistry, and photoactive units and metalloenzyme models) with Electrical Engineering (Surface patterning, lithography, and surface structure manipulation) and Molecular Biology (Structural biology, biological electron transfer, and membrane bound proteins) we will develop a major and long term interdisciplinary research program with this grand aim. Ultimately, success in this research could allow the development of a sustainable carbon neutral economy arresting the increasing CO2 levels in the atmosphere from fossil fuel burning. This will have a major impact limiting global warming whilst securing our energy needs - a major issue identified by the DTI CAT and Stern Review reports
Publications (none)
Final Report (none)
Added to Database 14/03/08