Students are challenged and stretched beyond their various academic backgrounds, imbuing them with ‘technical multi-lingualism’ and holistic, problem-focused thinking. High-quality training in advanced nanoscience concepts & experimental skills is delivered with a strong emphasis on applied learning formats (hands-on practicals & workshops) rather than traditional lectures.
Modules undertaken by students during this phase include Applied Nanoscience which comprises practicals on a broad spectrum of experimental and data analysis techniques, System Integration for Experimentalists, and two experimental research projects (Mini and Midi projects). An additional module on Innovation for Scientists will help students develop a wider perspective, including training on innovation, sustainability and responsible research.
At the six-month point, students select their interdisciplinary PhD research project, with two supervisors from two research groups in the Departments of Physics, Chemistry, Engineering, Materials Science or another relevant department across the University. Normally, the Midi research project would be closely linked to the PhD choice so that the students have a chance to get some experience in the prospective PhD lab before confirming their choice.
By joining the NanoDTC programme, students will benefit from being a member of a vibrant and growing ecosystem, interacting with like-minded researchers across academic departments, as well as university spinouts and companies in the Cambridge innovation network. The programme's cohort-based approach to PhD training provides opportunities for peer-to-peer learning and mutual support, a strong network for sharing information on facilities and tools for research, and fertile ground for novel research ideas.
We are seeking students who are keen to move beyond the silo of a single scientific discipline and undertake a holistic, rounded research experience within this unique environment. The programme welcomes applicants from across the physical sciences including Chemistry, Physics, Materials Science, Engineering and any other subject that gives applicants a good background to undertake a PhD in nanoscience and nanotechnology.
Learning outcomes
Knowledge and Understanding
By the end of the programme, students will have:
- broad knowledge of the discipline and a comprehensive understanding of the literature applicable to their own research in nanoscience and nanotechnology
- demonstrated originality in the application of knowledge, together with a practical understanding of how research and enquiry are used to create and interpret knowledge in their field
- shown abilities in the critical evaluation of current research and research techniques and methodologies
- acquired a range of knowledge relating to innovation and the enterprise landscape, sustainability and communication of research to a range of audiences
- learned to make connections between disparate fields of knowledge in order to see a more holistic picture
Programme Structure
Curriculum includes:
- The initial training and PhD project selection period will span the first six months, and will focus on development of knowledge and skills that prepare the student for the PhD project. This will include a module on Applied Nanoscience, integrating lecture materials with advanced practicals and data analysis techniques, a module on System Integration for Experimentalists and two short research projects. An additional module on Innovation for Scientists will help broaden the students' perspective beyond core scientific research.
- The first short project, the 'mini' project, will be selected for the student by the course organisers, in order to expand their research horizons. The second short project, the 'midi' project, which is linked to the PhD, will normally be chosen by the student from a list of approved proposals.
Admission requirements
Academic requirements
GPA: First Class
English requirements
TOEFL iBT: 100
IELTS: 7
General requirements
- Applicants for this course should have achieved a First class Honours Degree.
- If your degree is not from the UK, please check International Qualifications to find the equivalent in your country.
- Degree must be in a relevant discipline, with sufficient elements of physics, chemistry, materials or engineering sciences. Normally a 4-year degree is expected. This requirement can be waived if students who have completed a 3-year degree can demonstrate at least one year of additional relevant experience.
Tuition Fees
Tuition fees are shown in AUD and the most likely applicable fee is shown based on your nationality.
- International (Non-residents): 80,328 AUD / year ≈ 42,546 GBP / year
- Domestic (Citizens or residents): 21,161 AUD / year ≈ 11,208 GBP / year
Living costs
Cambridge, United Kingdom: 1,597-2,766 AUD / month
The living costs include the total expenses per month, covering accommodation, public transportation, utilities (electricity, internet), books and groceries.
Funding
Below you will find PhD's scholarship opportunities for Interdisciplinary Nanoscience and Nanotechnology.