**Why choose this course**
Could the design of novel nanomaterials based on atoms and molecules hold the secret to saving our planet from predicted climate catastrophe? Will solar energy provide the long-term alternative to fossil fuels? And how will we successfully harvest this energy?
Our MSc allows you to discover the practical implementation of nanoscience, quantum engineering, nanomaterials and nanotechnology for renewable energy generation and storage.
You’ll be taught by world-leading experts at the University’s Advanced Technology Institute, and gain sp...
**Why choose this course**<br/>Could the design of novel nanomaterials based on atoms and molecules hold the secret to saving our planet from predicted climate catastrophe? Will solar energy provide the long-term alternative to fossil fuels? And how will we successfully harvest this energy?<br/><br/>Our MSc allows you to discover the practical implementation of nanoscience, quantum engineering, nanomaterials and nanotechnology for renewable energy generation and storage.<br/><br/>You’ll be taught by world-leading experts at the University’s Advanced Technology Institute, and gain specialised skills through an individual research project within our research groups, using the latest advanced equipment and facilities.<br/><br/>**What you will study**<br/>You’ll begin by learning the fundamentals behind nanotechnology, before examining its implementation using nanomaterials – such as graphene, carbon nanotubes, 2D materials and perovskite solar cells.<br/><br/>Youll discover how advanced nanotechnology tools are used to allow us to see things at a nanoscale, while learning about future trends and applications for energy generation and storage. Topics include sustainable energy generation from solar, thermo electrics, piezo electrics, tribo electrics and hydrogen fuels cells, and storage with supercapacitors and batteries.<br/><br/>You can take part in the clean energy revolution taking place today, where the decarbonising of energy is the number one priority around the world.
Some courses vary and have tailored teaching options, select a course option below.
Course Details
Information
Study Mode
Full-time
Duration
1 Years
Start Date
09/2025
Campus
Stag Hill
Application deadline
Provider Details
Codes/info
Course Code
Unknown
Institution Code
S85
Points of Entry
Unknown
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