KAUST and King Abdulaziz University (KAU) are collaborating to develop low-cost sodium-ion battery technology using fly ash, a waste material from burning fossil fuels. Researchers are purifying fly ash and using thermal treatment to engineer its structure for use as carbon electrodes in batteries. The resulting carbon electrode material is competitive with existing market products and can be used for other applications. Why it matters: This research offers a sustainable approach to energy storage by repurposing waste materials, potentially enabling cheaper and more environmentally friendly grid-scale energy storage for renewable energy sources.
KAUST and King Abdulaziz University (KAU) have signed an MoU to boost collaboration in education, research, and professional development. The partnership will focus on applying AI to medical and clinical fields, leveraging KAU's medical infrastructure and KAUST's AI expertise. The agreement also involves developing academic programs in marine sciences and creating joint training opportunities. Why it matters: This collaboration between two leading Saudi universities aims to strengthen the Kingdom's higher education ecosystem and drive innovation in key fields like AI and healthcare, aligning with Saudi Vision 2030.
Researchers from KAUST, King Abdulaziz University, and King Abdulaziz University Hospital conducted a study comparing stem cells from Saudi Klinefelter patients with those from North American and European descent. Klinefelter syndrome affects approximately one in 600 Saudi males, but the MENA population is underrepresented in genomic studies of the disease. The study found a subset of genes on the X chromosome whose dysregulation characterizes Klinefelter syndrome, regardless of geographic origin or ethnicity. Why it matters: This research addresses a gap in understanding the molecular basis of Klinefelter syndrome in the MENA population and provides a platform for further studies of chromosomal diseases.
KAUST and King Abdulaziz University (KAU) have signed a memorandum of understanding (MoU) to collaborate and fund scientific research. The collaboration will focus on areas including cancer research, energy harvesting and storage, solar technology, renewable energy, and desert agriculture. The MoU was signed by Donal Bradley, KAUST VP for Research, and Yusuf Al Turki, KAU VP for Graduate Studies and Scientific Research. Why it matters: This partnership between two leading Saudi universities will help advance research and development in areas critical to Saudi Vision 2030.
KAUST alumna Manal Kalkatawi (Ph.D. '17), now an assistant professor at King Abdulaziz University (KAU), reflects positively on her time at KAUST. She earned a Ph.D. in computer science with a focus on bioinformatics and supervises master's theses at KAU. Kalkatawi emphasizes the positive and enriching atmosphere at KAUST, which helped her publish in prestigious journals. Why it matters: This highlights KAUST's role in developing Saudi talent in technical fields like bioinformatics and retaining them within the Kingdom's universities.
KAUST's Imaging and Characterization Core Lab (IAC) co-hosted a materials science optical microscopy workshop with Leica Microsystems. The workshop included hands-on training led by IAC staff scientist Ebtihaj Bukhari and Leica specialist Philippe Vignal. Researchers from KAUST, King Abdulaziz University (KAU), and Obeikan participated in the event. Why it matters: Such workshops contribute to developing local expertise in advanced materials science techniques, crucial for Saudi Arabia's industrial and research sectors.
KAUST alumnus Hussain Shibli (M.S. '13) is now the director general at the National Renewable Energy Data Center in King Abdullah City for Atomic and Renewable Energy (KACARE). Shibli obtained a bachelor's degree in electronics and communications engineering from King Abdulaziz University in 2010 before pursuing his master's at KAUST. He sees his position in the energy sector as an opportunity to lead renewable energy development in line with Saudi Vision 2030. Why it matters: This highlights KAUST's role in developing talent for key positions in Saudi Arabia's renewable energy sector, aligning with the Kingdom's strategic goals.
A KAUST and King Abdulaziz University research team is using superhydrophobic sand to grow crops like tomatoes with less water. Superhydrophobic sand reduces water consumption in agriculture, the world's largest consumer of freshwater. The sand was developed by KAUST's Himanshu Mishra and Ph.D. student Adair Gallo Junior. Why it matters: This research offers a promising solution for water conservation in agriculture, especially in arid regions like the Arabian Peninsula, addressing critical water security challenges.