Electrical Engineering

[School of Natural Sciences PhD Scholarships] 2D Nanoelectronics beyond Moore's law based on spintronics and thermoelectrics

The University of Manchester

Not stated

Location
Manchester, United Kingdom
Funding
Competition Funded PhD Project (Students Worldwide)
Application deadline
Year-round applications

About the project

About the Project As conventional electronics approaches fundamental scaling limits, alternative approaches based on electron spin and heat transport offer new opportunities for energy-efficient information processing. Two-dimensional (2D) materials and van der Waals heterostructures provide an ideal platform for investigating these phenomena, owing to their unique electronic, magnetic, and thermal properties, which can be tailored through material choice and interface engineering. This PhD project will explore spin and heat transport in graphene and related 2D materials, with the aim of understanding how spin, charge, and thermal currents interact at the nanoscale. The student will characterise nanoscale devices using advanced transport measurement techniques, developing expertise in spintronics, thermoelectrics, and low-dimensional quantum materials. The project will contribute to the development of next-generation nanoelectronic technologies beyond conventional charge-based electronics. We are looking for an enthusiastic and highly motivated graduate with: a strong background in solid-state physics, electronics, or related areas; an interest in experimental research and nanoscale device physics; good communication skills, both written and verbal. This project is expected to start in September 2027. Before you apply: You should contact the project supervisors to learn more about the project and discuss whether it may be suitable for you. How to apply: To be considered for this project you must complete a formal application through our online application portal. If you already have an applicant account this link will directly open an application for PhD School of Natural Sciences Scholarships . If you don’t already have an applicant account, please follow the instructions here . When applying, please specify the full title and supervisor/s of the project, details of your previous study, and names and contact details of two referees. You must also upload a Supporting Statement describing your motivation to apply to the project, your CV and transcripts of awarded and in-progress university qualifications . Please note late or incomplete applications will not be considered. Equality, diversity and inclusion are fundamental to the success of The University of Manchester and central to all our activities. A diverse research community strengthens creativity, productivity and quality, while increasing the societal and economic impact of our work. We welcome applicants from all career paths, backgrounds and sections of the community, regardless of age, disability, ethnicity, gender, gender expression, sexual orientation or transgender status. We welcome applications from candidates returning to study after a career break or experience in other roles. Flexible study arrangements may be available, including part-time study at 50%, 60% or 80%, subject to the requirements of the project and funder. Eligibility: The standard academic entry requirement for this PhD is an upper second-class (2:1) honours degree (or international equivalent) in Physics, Electronic Engineering and Nanotechnology OR any upper-second class (2:1) honours degree and a Master’s degree at merit (or international equivalent) in Physics, Electronic Engineering and Nanotechnology. Previous research experience in graphene and other two-dimensional materials; magnetism or electronic transport measurements; microfabrication techniques and data analysis is desirable. This project will remain open until filled. If your application is submitted by 1 st November 2026, you can expect a decision by 18 th December 2026. If your application is submitted by 15 th January 2027, you can expect a decision by 30 th March 2027. Self or externally funded students can also be considered for this project. FSESoNS

Research areas

Electrical EngineeringExperimental PhysicsQuantum MechanicsNanotechnologyEngineeringPhysics