Research Associate in Advanced Photonic Materials

Ulster University
Belfast, United Kingdom
Yesterday
£33 – £41 pa

Salary

£33 – £41 pa

Job Type
Contract
Work Pattern
Full-time
Work Location
On-site
Seniority
Mid
Education
Phd
Posted
5 May 2026 (Yesterday)

Benefits

Flexible working Family friendly working environment

Role: Research Associate in Advanced Photonic Materials
Department: School of Engineering
Grade:6/7 (£33,020 - £41,086 per annum)
Responsible to: Principal Investigator
Campus: Belfast
Reference: 042307

(Full-Time, Fixed term for 24 months)

- ABOUT US -

We are a university with a national and international reputation for excellence, innovation and regional engagement, making a major contribution to the economic, social and cultural development of Northern Ireland.

Our core business activities are teaching and learning, widening access to education, research and innovation and technology and knowledge transfer.

- THE ROLE -

The Research Associate will contribute to the investigation and characterisation of advanced two-dimensional materials within the framework of the MF-OL--KPFM methodology. The role focuses on materials synthesis, preparation, and nanoscale characterisation of van der Waals materials, including graphene and transition metal dichalcogenides. The postholder will conduct experimental measurements, collaborate with team members on calibration and parameter optimisation of the technique, and apply complementary characterisation methods to validate the results obtained using the proposed KPFM approach. The role will support the development of a comprehensive understanding of charge transport, surface potential dynamics, and photovoltage behaviour in advanced materials for next-generation electronic and energy devices. This position is funded through a UKRI FLF Fellowship and thus offers opportunities for further training and career development. The provisional start date for this position is 1st July 2026.

- ABOUT YOU -

- PhD in Physics, Materials Science, Nanotechnology, Mechanical/Electrical Engineering, or a closely related discipline.
- Experience in experimental research related to nanomaterials, semiconductor devices, or advanced materials.
- Experience in data analysis and interpretation of experimental measurements.
- Evidence of research outputs such as peer-reviewed publications, conference presentations, or technical reports.
- Demonstrable contribution to collaborative research projects.

Please find our employee benefits here:Employee Services & Benefits (ulster.ac.uk)

Ulster University holds a Silver Athena SWAN award in recognition of our commitment to advancing Gender equality in higher education. You can read more about what this means athttps://www.advance-he.ac.uk/equality-charters/transformed-uk-athena-swan-charter and on our University websitehttps://www.ulster.ac.uk/peopleandculture/employee-benefits/equality-diversity/athena-swan. The University has a range of initiatives to support a family friendly working environment, including flexible working.

The University is an equal opportunities employer and welcomes applicants from all sections of the community, particularly from those with disabilities. Appointment will be made on merit.

Related Jobs

View all jobs

Research Associate in Advanced AFM/KPFM for Photonic Materials

Ulster University Belfast, United Kingdom
£33 – £41 pa On-site

Electronic Design Engineer

Expert Employment Farringdon, Greater London, London, EC1M 4BJ, United Kingdom
£60,000 – £80,000 pa On-site

Embedded Software Engineer

Copello Whiteley, Hampshire, PO15 7LW, United Kingdom
£60 – £80 ph

Senior Electronics Engineer

Orion Electrotech Sands, Buckinghamshire, HP12 4BY, United Kingdom
£60,000 – £80,000 pa Hybrid

Electronic Design Engineer

Zenovo Filton, Gloucestershire, United Kingdom
£45,000 – £55,000 pa

Senior Electronics Design Engineer

Platform Recruitment Norwich, Norfolk, United Kingdom
£55,000 – £65,000 pa

Industry Insights

Discover insightful articles, industry insights, expert tips, and curated resources.

Where to Advertise Semiconductor Jobs in the UK (2026 Guide)

Advertising semiconductor jobs in the UK requires a fundamentally different approach to most technical hiring. The candidate pool is one of the smallest and most specialised in any engineering discipline — spanning IC design engineers, process engineers, fab technicians, EDA tool developers, compound semiconductor physicists and power electronics specialists. General job boards are largely ineffective for semiconductor hiring. The community is tight-knit, highly academic in its roots and concentrated around a small number of university groups, fab facilities and design centres. Specialist boards, academic channels and direct community engagement are the primary sourcing strategies that work. This guide, published by SemiconductorJobs.co.uk, covers where to advertise semiconductor roles in the UK in 2026, how the main platforms compare, what employers should expect to pay, and what the data says about hiring across different role types.

Semiconductor Jobs UK 2026: What to Expect Over the Next 3 Years

Semiconductors are the foundational technology of the modern world. Every smartphone, electric vehicle, data centre, medical device, satellite, and AI accelerator depends on them. And yet for much of the past decade, the strategic importance of semiconductor design and manufacturing was something that governments, investors, and employers took largely for granted — until supply chain crises, geopolitical tensions, and the insatiable compute demands of artificial intelligence made the vulnerability of global semiconductor supply chains impossible to ignore. The response has been significant and sustained. The UK's National Semiconductor Strategy, the US CHIPS Act, the EU Chips Act, and parallel investment programmes across Japan, South Korea, and Taiwan have collectively committed hundreds of billions of pounds to semiconductor research, design, and manufacturing capability. In the UK specifically, that investment is beginning to translate into real hiring — across compound semiconductor manufacturing, chip design, semiconductor equipment, advanced packaging, and the growing ecosystem of fabless design companies that are choosing Britain as their base. For job seekers, the semiconductor jobs market of 2026 represents an opportunity that is more commercially urgent, more geographically distributed, and more technically diverse than at any previous point in the sector's UK history. The roles being created span the full semiconductor value chain — from fundamental materials research and process engineering through chip design, verification, and the software that makes silicon useful. The candidates who will thrive over the next three years are those who understand where that value chain is being built, which technical areas are attracting the most investment, and how to position their skills at the intersection of the sector's greatest needs. This article breaks down what the UK semiconductor jobs market is likely to look like through to 2028 — covering the titles emerging right now, the technologies driving employer demand, the skills that will matter most, and how to position your career at the leading edge of one of the most strategically important technology sectors in the UK economy.

New Semiconductor Employers to Watch in 2026: UK and International Companies Transforming Chip Careers

The semiconductor industry is entering a new era of investment, geopolitical significance, and technological innovation. As advanced chips power everything from artificial intelligence and edge computing to autonomous vehicles and 5G infrastructure, demand for skilled professionals across design, verification, fabrication, and test engineering continues to rise. For professionals exploring opportunities on www.SemiconductorJobs.co.uk , understanding which employers are scaling, raising funds, winning contracts, or establishing UK operations is critical. This article highlights the new semiconductor employers to watch in 2026, including UK innovators, major international players expanding locally, and emerging firms driving next‑generation semiconductor technologies.