Sasol and HZB deepen collaboration with strategic focus on digitalisation

© ChatGPT/SASOL

Dr. Randy Cunningham (Sasol Research and Technology) has been selected to collaborate with HZB in the digitalisation space. The initiative started in September 2025.

Dr. Randy Cunningham (Sasol Research and Technology) has been selected to collaborate with HZB in the digitalisation space. The initiative started in September 2025. © SASOL

Sasol Research & Technology and Helmholtz Zentrum Berlin (HZB) are expanding their partnership into the realm of digitalisation, building on their joint efforts in the CARE-O-SENE project and an Industrial Fellowship launched earlier this year. This new initiative marks a significant step forward in leveraging digital technologies to accelerate catalyst innovation and deepen scientific collaboration.

As part of its broader digitalisation strategy, Sasol Research and Technology has identified Digital Catalysis, Artificial Intelligence (AI), and Machine Learning (ML) as key growth areas for future research. HZB is similarly advancing its expertise in Digital Catalysis and data-driven analysis of complex catalyst characterisation datasets. This effort is supported by the establishment of a joint data centre with scientific partners on the HZB campus. Their strong external network further strengthens the potential for impactful collaboration.

Dr. Randy Cunningham, a rising researcher at Sasol Research and Technology, has been selected to work closely with HZB in this emerging field. Holding a PhD in Polymer Science from Stellenbosch University, Cunningham has been trained in Fischer–Tropsch catalysis and has contributed to several CARE-O-SENE initiatives. He is actively developing his digital skillset through hands-on training and recently published a paper applying machine learning to industrial polymerization processes at Sasol. 'Being involved in this collaborative initiative at the crossroads of catalysis and data science is a truly exciting prospect. It represents a significant step towards achieving more sustainable and efficient chemical processes on an industrial scale', Cunningham says.

Dr. Tobias Sontheimer, co-lead of CARE-O-SENE and Head of Strategy at HZB, comments: 'We’re thrilled to launch this new chapter in our partnership with Sasol. It not only reinforces our shared commitment to skills development across the consortium but also propels our digitalization agenda forward.'

Andy Msiza, Senior Vice President of Sasol research and Technology  and executive sponsor of the program, adds: 'This initiative presents an exciting opportunity to nurture our next generation of researchers in a field that is increasingly important to Sasol’s future. There is potential with this approach to unlock value, both in current operations and future innovations, making a significant impact.'

Looking ahead, the collaboration is expected to span multiple dimensions, including skills transfer, advanced modelling of synchrotron datasets generated at BESSY II, and the application of AI to conduct meta-analyses of historical literature and plant data. These efforts aim to generate new insights and drive transformative breakthroughs in catalysis research.

Sasol/HZB

  • Copy link

You might also be interested in

  • 3D magnetic field experiment at BESSY II takes spintronics a step further
    Science Highlight
    07.09.2026
    3D magnetic field experiment at BESSY II takes spintronics a step further
    (Fe0.63Ni0.3Pd0.07)3P or FNPP is a magnetic material that exhibits complex magnetic structures even at room temperature. This makes the material of interest for spintronics, a field that could enable data processing with significantly lower energy consumption. One potential application is novel magnetic memory devices. However, generating and modifying the desired structures in a controlled manner remains a challenge to date. A new study led by HZB has now taken a step forward in this regard. They demonstrated at the worldwide unique VEKMAG-Station at BESSY II, that a tiny external B-field in the plane of the magnetic patterns is sufficient to change them.
  • Thin nickel films boost green hydrogen production
    Science Highlight
    04.09.2026
    Thin nickel films boost green hydrogen production
    Ultra-thin nickel oxide coatings can significantly improve the performance of anion exchange membrane (AEM) water electrolysers, a promising technology for producing green hydrogen. This was demonstrated by a team led by HZB scientist Dr. Michelle Browne. The results show that a nickel oxide film only 10 nanometres thick outperformed conventional nickel oxide powder electrodes while using less than 1% of the catalyst material. The study is published in the Journal of Materials Chemistry A,
  • Detailed insights at BESSY II into the oxidation processes of copper
    Science Highlight
    02.09.2026
    Detailed insights at BESSY II into the oxidation processes of copper
    Before pure copper oxide builds up, complex superstructures such as ‘29’CuxO, are formed. The new results on the '29' CuxO superstructure have relevance for catalyst research and corrosion protection in the development of safe copper containers for nuclear waste repositories.