Department: Physics
Organisation: University of Cambridge
Cambridge-AMOLF Collaboration on Photonic and Optoelectronic Control of Thin-Film LEDs and Solar Cells
Control of spin and coherence in electronic excitations in organic and hybrid organic/inorganic semiconductor structures
ECCS-EPSRC Superlattice Architectures for Efficient and Stable Perovskite LEDs
GLOBAL - Advanced Materials for Energy and Sustainable Manufacturing
Manufacturable nanoscale architectures for heterojunction solar cells
Sir Henry Royce Institute - Cambridge Equipment
Unravelling ultrafast charge recombination and transport dynamics in hybrid perovskites.
(Newton) Advancing the efficiency and production potential of excitonic solar cells (APEX), Phase- II
A National Thin-Film Cluster Facility for Advanced Functional Materials
Advanced Materials Characterisation Suite in the Maxwell Centre, University of Cambridge
Advancing the efficiency and production potential of Excitonic Solar Cells (APEX)
Centre for Advanced Materials for Integrated Energy Systems (CAM-IES)
Harnessing vibration-induced enhancement of transport in functional materials with soft structural dynamics
Improved Understanding, Development and Optimisation of Perovskite-based Solar Cells
Manufacturing Organic-Inorganic Nanoparticle Composites with Nanoscale Precision via Directed Self-Assembly
SUPERGEN Excitonic Solar Cell Consortium - MAIN CORE
Science Bridge Award USA: Harnessing Materials for Energy
Singlet Fission Photon Multipliers - Adding Efficiency to Silicon Solar Cells
Sir Henry Royce Institute - recurrent grant
Strategic University Network to Revolutionise Indian Solar Energy (SUNRISE)
SuperSolar Hub Extension
The Royce: Capitalising on the investment
The SUPERGEN Excitonic Solar Cells Consortium
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