Ramadan Mubarak Physical Science and Engineering Division_KAUST

Welcome to the Physical Science and Engineering Division of the King Abdullah University of Science and Technology

 

The mission of the Physical Science and Engineering Division is to advance science and technology through education, interdisciplinary research, and innovation. Our goal is to contribute to the preservation of the planet and accelerate the impact on the Saudi economy.

 

Our educational programs and research initiatives are aligned with Saudi national RDI priorities and Vision 2030. We aim to provide the Kingdom with the next generations of scientists, engineers, and entrepreneurs capable of understanding and devising innovative solutions to global challenges. These challenges are encapsulated in the four RDI Pillars: Sustainable Environment & Essential Needs, Health and Wellness, Energy and Industrial Leadership, and Economies of the Future.

 

PSE research areas contributing to the Kingdom RDI Pillars and Vision 2030

 

PSE Research Aligning with Vision 20230's RDI pillars

 

Within this strategic framework, PSE fundamental and applied research addresses environmental protection, climate change, energy, and smart cities. We strive to achieve this by developing green fuels and renewable energies, creating novel materials and health applications, and providing solutions for better utilization and protection of our natural resources.

 

Chak Chan
Dean, Physical Science and Engineering Division


The new PSE Report 2024 is out!

Stronger, lighter, cheaper: a new route to carbon fiber production

03 March, 2025

Low-cost oil residues could be converted into valuable carbon fibers.

Advanced carbon fiber materials could be used in applications from wind turbine blades to biomedical implants following the development of a low-cost carbon fiber feedstock.

The carbon fibers were spun from synergistic blends of the low-value heavy oils left over from crude oil refining by members of KAUST’s Clean Energy Research Platform. The work could not only facilitate broader carbon fiber uptake but also create sustainable new uses for residual oils as the world transitions to alternative energy systems.

“Crude oil is a resource with immense potential beyond fuels,” says Edwin Guevara Romero, a researcher in the labs of Mani Sarathy, who led the work. “Using oil residues as feedstocks for carbon materials is an innovative, high-value application of oil-derived resources, paving the way for economic diversification,” he says.

Carbon fiber is in increasing demand across many industries due to its exceptional properties, including high mechanical strength and durability, low weight, thermal stability, and electrical conductivity. One limiting factor is its high cost, which can largely be attributed to the expensive carbon precursor, polyacrylonitrile (PAN), used to make it.

PAN’s high cost has prompted a search for alternative feedstocks. “Oil residues could offer a cost-effective and abundant alternative,” Guevara says. For their research, the team targeted the heaviest, most complex – and traditionally, hardest to process – components of residual oil, called asphaltenes and resins.

Previously, asphaltenes have been trialed as carbon fiber feedstocks. However, efforts to spin these materials into fibers were limited by their tendency to break, and the carbon fiber yield from the final carbonization heat treatment step was relatively low.

“Previous studies of oil residues have suggested that resins stabilize asphaltene molecules, highlighting their strong molecular affinity,” Guevara says. “This led us to hypothesize that blending asphaltenes with resins could create a synergistic feedstock for carbon fiber production.”

The team showed that the blend offered several advantages over asphaltenes alone as carbon fiber feedstocks. It had better flow characteristics and could be spun at a lower temperature, reducing energy consumption. The team also observed fewer strand breakages during spinning and attained a higher yield after the carbonization step. “This improves the viability of the process by maximizing the conversion of the precursor material into the final carbon fiber product,” Guevara says.

Read more at KAUST Discovery.

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PSE Post-graduate Programs

Welcome to the PSE post-graduate studies area!

At PSE, students embark on a journey of discovery as they pursue careers in science, industry, and academia. Surrounded by cutting-edge facilities and supported by our international team of faculty and staff, KAUST is today's best destination for students to explore the leading edge of science and earn a post-graduate diploma recognized worldwide.

Our division currently offers seven programs at the post-graduate level, including both Master's and Ph.D. options. Under expert advisors' guidance, students can design personalized course paths and research projects tailored to their career goals. Each program combines lectures, seminars, and laboratory classes, empowering students to transform their ideas into research projects independently.

Beyond academic pursuits, PSE students at KAUST enjoy a LEED-certified campus situated on the shores of the Red Sea, enveloped in pristine surroundings. The campus hosts a rich program of scientific and business events organized by KAUST and its top-tier industrial partners like ARAMCO, Sabic, Dow, Boeing, Bruker, Hewlett Packard, and more. This lively atmosphere provides students with ample networking avenues and the opportunity to engage in extracurricular activities, while maintaining a well-balanced personal life. 

KAUST is an exceptional place to study, work and thrive.

If you aspire to a career in science and technology, our programs provide an excellent starting point. Both Master's and Ph.D. programs are fully funded by the university, covering tuition fees and providing a monthly stipend for  the duration of the degree. Please explore the links below to learn more about our programs and begin your journey toward a fulfilling career in your chosen field of expertise.