12 monthsProgramme duration
42,400 GBPTuition Fee/year
04 Jul, 2025Application Deadline
SepStarting Month
Programme overview
Main Subject
Engineering - Electrical and Electronic
Degree
MRes
Study Level
Masters
Study Mode
On Campus
Learn how to create and optimise new types of electronic materials and devices for a diverse range of applications on this interdisciplinary course.
Deepen your understanding of a thriving area of research, which targets applications such as light-emitting diodes, batteries, wearable electronics devices and sensors.
You'll engage with highly multidisciplinary science during your studies. The programme will span physics, chemistry, materials science, chemical engineering and bioengineering.
Over 12 months, you'll explore topics including organic and inorganic semiconductors, material synthesis and processing, materials characterisation, and device physics and applications.
Research activities are wide-ranging, from modelling molecules and materials, to measuring and analysing materials and device performance for targeted applications.
The course is comprised of lectures and advanced skills training, as well as a substantial independent research project and thesis.
Programme overview
Main Subject
Engineering - Electrical and Electronic
Degree
MRes
Study Level
Masters
Study Mode
On Campus
Learn how to create and optimise new types of electronic materials and devices for a diverse range of applications on this interdisciplinary course.
Deepen your understanding of a thriving area of research, which targets applications such as light-emitting diodes, batteries, wearable electronics devices and sensors.
You'll engage with highly multidisciplinary science during your studies. The programme will span physics, chemistry, materials science, chemical engineering and bioengineering.
Over 12 months, you'll explore topics including organic and inorganic semiconductors, material synthesis and processing, materials characterisation, and device physics and applications.
Research activities are wide-ranging, from modelling molecules and materials, to measuring and analysing materials and device performance for targeted applications.
The course is comprised of lectures and advanced skills training, as well as a substantial independent research project and thesis.
Admission Requirements
Tuition fees
Domestic
International
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