Department: Chemistry
Organisation: Imperial College London
Metal substrate mounted flexible dye sensitised semiconductor solar cells
ORGANIC HETEROJUNCTION PHOTOCATALYSTS FOR SOLAR-DRIVEN GREEN HYDROGEN SYNTHESIS FROM WATER
Polymer semiconductors toward efficient photocatalytic H2 production from sea water - understanding and exploiting the presence of ions
Solar Fuels
Towards stable solar water-splitting devices: elucidating the degradation kinetics in metal oxides-based photoelectrochemical devices
(Newton) Advancing the efficiency and production potential of excitonic solar cells (APEX), Phase- II
Advancing the efficiency and production potential of Excitonic Solar Cells (APEX)
Application Targeted and Integrated Photovoltaics - Enhancing UK Capability in Solar
Global Hydrogen Production Technologies (HyPT) Center
H2terascale - Improved oxygen evolution catalysis to enable terawatt scale hydrogen production
High-efficiency Hybrid Solar Cells for Micro-generation
ISCF Wave 1: Materials research hub for energy conversion, capture, and storage
Improved Understanding, Development and Optimisation of Perovskite-based Solar Cells
Nano-structured Catalysts for CO2 Reduction to Fuels
New and Renewable Solar Routes to Hydrogen Energy
PLATFORM: Molecular Engineering Rules in Functional Nanoscale Assemblies
SONSEUROCORES - Self Organised Hybrid Devices (SOHYD)
SUPERGEN Excitonic Solar Cell Consortium - MAIN CORE
Scalable low-cost organic photovoltaic devices
Self-organized nanostructures and transparent conducting electrodes for low cost scaleable organic photovoltaic devices
SuperSolar Hub Extension
Sustainable Product Engineering Centre for Innovative Functional Industrial Coatings - SPECIFIC
The SUPERGEN Excitonic Solar Cells Consortium
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