Postdoc in “live” electron microscopy in catalysis at the atomic-scale - DTU Physics
About this role
Are you driven to observe catalysts in action—atom by atom, in real time, under realistic conditions? Do you want to use state-of-the-art electron microscopy to answer fundamental questions at the frontier between catalysis, chemical, materials and quantum sciences?
We are recruiting Postdocs to explore catalytic materials using state-of-the-art operando, atomic-resolution transmission electron microscopy (TEM).
Why join VISION?
At VISION, you will join a highly collaborative, international, and interdisciplinary research environment where advanced electron microscopy and spectroscopy, microfabricated reactors, catalysis, cluster science, and computational modelling come together to reveal how catalysts function at the atomic scale.
This is an exceptional opportunity for ambitious researchers who want to shape the frontier of “live” electron microscopy and wants to build foundation for independent academic or corporate research career.
Your Impact
Catalysts are metastable nanomaterials. Their active surface sites dynamically restructure during adsorption and reaction of molecules. However, many of these processes remain hidden because they occur at the atomic scale and in real time.
Your research will address this challenge by using the new VISION PRIME electron microscope, a state-of-the-art instrument designed for operando and low-dose-rate atomic-resolution TEM studies.
You will contribute to a deeper mechanistic understanding of catalytic processes and help guide the design of next-generation catalyst materials.
What You’ll Do
Depending on your background and interests, you will undertake research activities such as:
- Performing operando, low-dose-rate TEM to capture real-time atomic-scale catalyst dynamics
- Advancing ultrasensitive imaging and spectroscopy of gas–surface interactions, molecular adsorption, and active-site formation
- Fabricate and use microfabricated reactors for realistic catalytic environments
- Visualize, quantify and interpret nanoparticle restructuring, vibrations, and surface dynamics
- Develop and apply Python-based image/data analysis tools for large time-resolved TEM datasets
- Establish quantitative links between 3D atomic structure, dynamics and catalytic functions of single nanoparticles
- Collaborate with computational researchers to atomic-scale mechanisms, kinetics, and strategies for stabilizing active catalytic structures
- Contribute to high-impact scientific publications and present your results at international conferences.
- Take an active role in shaping new research directions within the VISION environment.
Qualifications
Your application must include a concise description of your research skills and experience.
We favor candidates with a degree in physics, chemistry or materials science. Candidates must have documented skills in atomic-resolution transmission electron microscopy. Candidates should also have documented experience in one or more of the following areas: microfabricated devices, 2D materials, catalysis and/or surface science. Strong skills in scientific programming, e.g. using Python, is expected.
Moreover, the candidate should have obtained an excellent academic track record, demonstrated outstanding problem-solving abilities, and good communication skills in both spoken and written English. Moreover, the candidates should also have proven ability to work both independently and collaboratively in an international top-research team on a relevant scientific question.
As a formal qualification, you must hold a PhD degree (or equivalent).
We offer
DTU is a leading technical university globally recognized for the excellence of its research, education, innovation and scientific advice. We offer a rewarding and challenging job in an international environment. We strive for academic excellence in an environment characterized by collegial respect and academic freedom tempered by responsibility.
Salary and terms of employment
The appointment will be based on the collective agreement with the Danish Confederation of Professional Associations. In addition, supplements can be negotiated in accordance with DTU’s salary structure for scientific staff: https://www.inside.dtu.dk/en/human-resources/during-employment/salary/salary-structures
It is a full-time position, and the period of employment is 2 years. The starting date is as soon as possible (or according to mutual agreement).
You can read more about career paths at DTU here.
Further information
Further information may be obtained from Professor Christian D. Damsgaard (e-mail: [email protected]), Professor Joerg R. Jinschek (email: [email protected]), Professor Stig Helveg (email: [email protected]).
You can read more about VISION at www.vision.dtu.dk and DTU Physics at https://physics.dtu.dk/
If you are applying from abroad, you may find useful information on working in Denmark and at DTU at DTU – Moving to Denmark.
Application procedure
Your complete online application must be submitted no later than 30 September 2026 (23:59 Danish time).
Applications must be submitted as one PDF file containing all materials to be given consideration. To apply, please open the link "Apply now", fill out the online application form, and attach all your materials in English in one PDF file. The file must include:
- Application (cover letter)
- CV
- Academic Diplomas (MSc/PhD – in English)
- List of publications
Applications received after the deadline will not be considered.
All interested candidates irrespective of age, gender, disability, race, religion or ethnic background are encouraged to apply. As DTU works with research in critical technology, which is subject to special rules for security and export control, open-source background checks may be conducted on qualified candidates for the position.
The Center for Visualizing Catalytic Processes (VISION) is funded by the Danish National Research Foundation and located at DTU Physics. VISION has developed a new transmission electron microscope platform, VISION PRIME, for visualizing catalytic nanoparticles and reactions at the atomic-level and integrates with cutting-edge TEM methodologies, microfabricated nanoreactors, nanoparticle synthesis and computational modelling. This approach enables new, direct operando observations that are urgently needed to advance mechanistic insight into catalytic processes at the atomic-scale.
VISION’s activities are centered in DTU’s new "Climate Challenge Laboratory" building. The new laboratory hosts the VISION center, the Surface Physics and Catalysis section, the CatTheory section and the newly established Pioneer Center, CAPeX, as a vibrant collaborative research environment with internationally leading scientists in the fields of catalysis and power-to-X.
DTU – For the benefit of society since 1829
DTU is one of Europe's leading elite technical universities. Through research and education at an international top level, we create solutions to the major societal challenges of our time and help secure Europe's global leadership in sustainable technological development. Since Hans Christian Ørsted founded DTU almost 200 years ago, our mission has remained the same: We develop and create value through the natural and technical sciences for the benefit of society. DTU has 13,800 students, 1,600 PhD students, and 6,500 employees. We work in an international environment and have an inclusive, stimulating, and informal work culture. DTU has campuses in all parts of Denmark and in Greenland and collaborates with the best universities around the world.
Company at a glance
Mission & Vision
DTU Nanolab is the National Centre for Nanofabrication and Characterization in Denmark. The center is an open access research infrastructure facility owned by and located at the Technical University of Denmark (DTU).
The 100 staff members include engineers, technicians as well as professors and Ph.D. students. Link to staff
Our Mission is threefold
- To push the boundaries of micro/nano fabrication and electron beam based characterization.
•To provide Denmark with state-of-the-art infrastructure, technology and education within micro- and nanofabrication and nanocharacterization.
•To enable Danish industry to exploit the existing and future benefits of nanotechnology.
Open Access
Pending proper training and instructions DTU Nanolab is open to all academic and commercial entities either through partnership or on a pay per use basis.
We operate and maintain advanced processing equipment within 1350 m2 cleanroom facilities. Our suite of 9 advanced electron microscopes allows in-situ study of chemical reactions with atomic resolution as well as characterization of composition and nanocrystalline structure of materials.
Broad Network
Our customer base reaches from small start-up to multinational companies.
We host users and collaborate with most of the Danish and a number of foreign universities. Concerning operation of the facility, user safety, tool access and booking systems as well as user training we have close exchange of best practice with our colleagues in the Nordic Countries (NTNU, Chalmers, ALTO,KTH) as well as other universities facilities such as MIT, Stanford, Tyndall Labs, University of Twente and the Australian National Fabrication Facility (ANFF).
Top Benefits
- Academic freedom
- International research environment
- Professional development
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