University of Strathclyde

UK
38 Scholarships 105 Programs 3 Degree levels
Masters

Nanoscience (Profile)

DegreeMasters
Fieldnanoscience

The MSc Nanoscience (Profile) at the University of Strathclyde is an advanced, research-led programme that blends fundamental science with practical laboratory and fabrication skills for working at the nanoscale. It suits science or engineering graduates who want to specialise in nanoscale materials, devices and characterisation and who aim to move into research, industry or further study.

What you'll study

This Masters combines taught modules with a substantial research project. You will study the physics and chemistry of materials at the nanoscale, practical methods for making and measuring nanostructures, and computational approaches for modelling nanosystems. Core topic areas typically include:

  • Nanomaterials and Characterisation — synthesis routes, structural and chemical analysis, and use of electron and scanning probe microscopy.
  • Nanofabrication and Microsystems — cleanroom processing, lithography, thin-film deposition and device fabrication techniques.
  • Quantum and Molecular Nanoscience — quantum confinement, molecular electronics and quantum coherence phenomena relevant to nanoscale devices.
  • Surface and Interface Science — surface chemistry, adsorption, functionalisation and their impact on nanoscale behaviour.
  • Nanoscale Electronics and Devices — device physics for sensors, transistors and photonic components at the nanoscale.
  • Modelling and Simulation — atomistic and continuum modelling, numerical methods and data analysis as applied to nanoscience problems.
  • Advanced Spectroscopy and Imaging — optical, vibrational and electronic spectroscopic techniques used for nanoscale characterisation.
  • Research Project — an extended laboratory- or literature-based project that develops specialist practical, analytical and reporting skills; projects are typically supervised by research-active academic staff and may be linked to industry partners.

Teaching methods include lectures, practical laboratory and cleanroom sessions, seminars, group work and independent research. Assessment is by a mix of laboratory reports, coursework, exams and the dissertation or research project.

Entry requirements

Applicants are normally expected to hold a good honours degree in physics, chemistry, materials science, electronic engineering or a closely related discipline. The typical entry level is equivalent to a UK upper second-class (2:1) degree, though applicants with relevant industrial experience or a lower-class honours degree may also be considered on a case-by-case basis.

Applicants whose first language is not English will be required to demonstrate proficiency through an approved test (for example, a commonly requested level is an overall IELTS score with minimum component scores). You will also normally need academic references and a personal statement outlining your interest and relevant experience in nanoscience.

Career prospects

Graduates from this programme go into a wide range of roles in industry, academia and public sectors. Typical career paths include:

  • Research and development positions in microelectronics, semiconductor and advanced materials companies.
  • Roles in nanofabrication and device engineering within photonics, sensors and MEMS/NEMS industries.
  • Analytical and materials characterisation posts in contract research organisations and central facilities using electron microscopy and spectroscopy.
  • Positions in biomedical devices, drug delivery and diagnostics where nanoscale engineering is applied.
  • Technology transfer, consultancy, intellectual property and regulatory roles supporting emergent nanotechnologies.
  • Progression to PhD study and careers in academic research and teaching.

Why study at University of Strathclyde

Strathclyde has a long tradition of applied science and strong links with industry, providing opportunities for collaborative projects and placement-style research. The university houses well-equipped laboratories and access to advanced characterisation and fabrication facilities, enabling hands-on training in cleanroom processes, electron microscopy and spectroscopy.

Teaching is delivered by staff actively engaged in nanoscience research across physics, chemistry and engineering, creating an interdisciplinary environment. The university's emphasis on translating research into commercial outcomes means graduates gain both scientific depth and practical skills valued by employers. Additionally, students benefit from graduate support services, enterprise and career development programmes based in Glasgow, a city with a strong technology and manufacturing base.

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Programme details are indicative and may change — always verify current information with the official university website before applying.