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-structured compounds were first used in solar cells in 2012 and have seen rapid increases in efficiencies to over 25%, already higher than most competing technologies. The major obstacle of perovskites is
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New, nanoscale insights into perovskite solar cells for clean energy solutions Department of Physics and Astronomy PhD Research Project Directly Funded UK Students Dr Alex Ramadan Application
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Unlocking Next-Generation Solar Cells: Integrating Novel Non-Fullerene Acceptors with Metal Halide Perovskites Department of Physics and Astronomy PhD Research Project Directly Funded UK Students Dr
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operating physics of mesoporous carbon perovskite solar cells. The project will focus on using optoelectronic perturbation techniques such as transient photovoltage decay and impedance spectroscopy to probe
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University, offers a unique opportunity to delve into the device operating physics of mesoporous carbon perovskite solar cells. The project will focus on using optoelectronic perturbation techniques such as
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Number of Opportunities Available: 1 fully funded place Supervisors: Dr. Bora Karasulu (Chemistry), Dr. Albert Bartok-Partay (Physics) Summary: Solar modules incorporating lead-halide perovskites
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of the STRIPS Project at Swansea University, offers a unique opportunity to delve into the device operating physics of mesoporous carbon perovskite solar cells. The project will focus on using
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Perovskite Solar Cells Department of Chemical & Biological Engineering PhD Research Project Self Funded Dr Alan Dunbar Application Deadline: Applications accepted all year round Details Perovskite
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Tracking Energy Flow in Metal Halide Perovskites for Improved Solar Cells Department of Materials Science and Engineering PhD Research Project Directly Funded UK Students Dr Robbie Oliver, Dr J
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of Perovskite-on-Silicon Tandem Solar Cells. This is a collaborative project between Oxford Materials and Oxford Physics. The goal of the project is to deliver a novel tandem technology with the potential