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Group Info
 
Institution:
University of Warwick           
Department:Chemistry
Group:Eletrochemistry and Interfaces
Type of Institution:University
Contact Person:Julie Macpherson  (More info)
Address:Department of Chemistry, University of Warwick, Coventry, CV4 7AL
Country:United Kingdom
Phone:02476 573886
Website:http://www2.warwick.ac.uk/fac/sci/chemistry/research/unwin/electrochemistry
Main research areas:   Graphene Chemistry
  Molecular, chemical and bio sensing
  Nanoelectronics devices
  Electrochemistry
Personal:
Permanent Staff: 2 Post doctoral: 6 PhD: 24
Technicians: 0 Others: 0
Participating Projects (Graphene related)
   P1: Uncovering the Electroactivity of Novel sp2 Carbon Materials through Quantitative High Resolution Visualisation - More Info
  Coordinator: P.R.Unwin (Warwick University, United Kingdom) Funding Source: Local
  Total Funding: 624000 € - Partner Funding: 624000€ - Nº of Partners: 1
  Starting Year: 2010 - Duration: 3 years.
Funding (average per year)
   2010: 208000 € (P1) 
   2011: 208000 € (P1) 
   2012: 208000 € (P1) 
 
2010  
208 
 
 
2011  
208 
 
 
2012  
208 
 
 
in thousand €
Infrastructures
   Tool: confocal microscopes; Trade Name: Leica and Zeiss; Model: TCS SP5 X (Leica) and LSM 510 (Zeiss); Installation Year: 2009;
      Tool Specificities: white light laser (Leica)
   Tool: atomic force microscopes; Trade Name: Bruker Nano; Model: Multimode, Enviroscope and Catalyst; Installation Year: 2008;
      Tool Specificities:
   Tool: scanning electrochemical microscopes (SECM); Trade Name: home built; Model: home built; Installation Year: 0;
      Tool Specificities: We have 6 state of the art electrochemical imaging rigs for imaging electrochemical activity at surfaces at micron and sub-micron resolution
   Infrastructure: clean room; Area: 0; Installation Year: 2008;
      Main tools available: electron beam evaporator thermal sputterer and evaporator photolithography kit
Graphene research topics
· THEORETICAL AND EXPERIMENTAL RESEARCH ACTIVITIES
   Growth, synthesis techniques and integration methods
       CVD
        Exfoliation
   Molecular, chemical and bio sensing
 
 
 
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