Overview
Context of Stability and efficiency improvement of perovskite solar cells by controlling synthesis and deposition processing parameters at University of Dundee
In this work, the impact of both synthesis and deposition processing parameters of perovskite layer on stability and photovoltaic characteristics of PSC devices is studied.
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Visit programme websiteProgramme Structure
- Organic–inorganic hybrid metal halide perovskite solar cells (PSCs) have gained extensive research interest in the last decade due to their low-cost fabrication, excellent optoelectronic properties, and rapid increase in power conversion efficiency.
- During the past few years, many efforts have been reported on optimising the device structure and the composition, phase, and morphology of the perovskite layer, resulted in efficiency improvement over 23%. Moreover, various works have been carried out on stability improvement of the device by encapsulation, and employment of inorganic perovskites, buffer layers, water-insoluble lead compound, etc.
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Visit programme websiteKey information
Duration
- Full-time
- 36 months
Start dates & application deadlines
- StartingApplication deadline not specified.
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Disciplines
Mechanical Engineering General Engineering & Technology View 117 other PhDs in General Engineering & Technology in United KingdomExplore more key information
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English requirements
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Other requirements
General requirements
- You should have an honours degree at 2.1 or above, and/or a Masters degree in a relevant discipline.
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Visit programme websiteTuition Fee
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International
25305 GBP/yearTuition FeeBased on the tuition of 25305 GBP per year during 36 months. -
National
4825 GBP/yearTuition FeeBased on the tuition of 4825 GBP per year during 36 months.
Living costs for Dundee
The living costs include the total expenses per month, covering accommodation, public transportation, utilities (electricity, internet), books and groceries.
Funding
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Scholarships Information
Below you will find PhD's scholarship opportunities for Stability and efficiency improvement of perovskite solar cells by controlling synthesis and deposition processing parameters.
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