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EPSRC Capital Award emphasising support for Early Career Researchers

Reference Number
EP/S017623/1
Title
EPSRC Capital Award emphasising support for Early Career Researchers
Status
Completed
Energy Categories
Renewable Energy Sources(Solar Energy, Photovoltaics)
Not Energy Related
Research Types
Equipment
Science and Technology Fields
PHYSICAL SCIENCES AND MATHEMATICS (Chemistry)
PHYSICAL SCIENCES AND MATHEMATICS (Physics)
PHYSICAL SCIENCES AND MATHEMATICS (Metallurgy and Materials)
ENGINEERING AND TECHNOLOGY (Electrical and Electronic Engineering)
UKERC Cross Cutting Characterisation
Not Cross-cutting
Principal Investigator
Professor K Badcock
Mech, Materials & Aerospace Engineerin
University of Liverpool
Award Type
Standard
Funding Source
EPSRC
Start Date
15 October 2018
End Date
14 April 2020
Duration
18 months
Total Grant Value
£225,000
Industrial Sectors
Unknown
Region
North West
Programme
NC : Infrastructure
Investigators
Principal Investigator
Professor K Badcock, Mech, Materials & Aerospace Engineerin, University of Liverpool
Other Investigator
Dr A J Cowan, Chemistry, University of Liverpool
Dr F Jaeckel, Physics, University of Liverpool
Dr JD Major, Physics, University of Liverpool
Dr JL Walsh, Electrical Engineering and Electronics, University of Liverpool
Web Site
Objectives
Abstract
The development of new healthcare technologies and materials for solar energy conversion would have significant societal benefits and it will directly address EPSRC priorities of enabling a Healthy and Resilient Nation. It is therefore important that the UK's research base in these areas is strengthened. The University of Liverpool will use the capital award to accelerate the activities of a large cohort of high potential early career researchers (ECRs) in these fields. Our aim is to procure fit-for-purpose equipment that leverages existing investment and will enable our ECRs' most ambitious research programmes whose aims include: the development of entirely new classes of photovoltaic devices, realising materials for artificial photosynthesis, the advancement of novel technologies for surface decontamination and the discovery of new antimicrobial materials.Providing our ECRs with state-of-the-art equipment to address the underpinning mechanisms of these technologies will deliver new capabilities for our team and allow our researchers to develop world-class laboratories that achieve both academic and societal impact. The equipment will be housed in an ECR led laser laboratory and have new capabilities in fast transient spectroscopy, primarily laser induced fluorescence and transient absorption spectroscopy. This will also have wider benefits to the academic community with applications across, catalysis, sensing and advanced manufacturing also being able to gain insight from the equipment. To ensure maximum usage this will be shared equipment, administered through the Universities Shared Facilities Scheme. Equipment sharing and collaborative science is at the core of our proposal as it provides access to a wide user base, leads to the development of novel approaches to existing problems and ultimately will accelerate the career development of our most promising and talented early career researchers.
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Added to Database
15/03/19