Completed Chemistry Physics & Astronomy

GCRF - START: Synchrotron Techniques for African Research and Technology

In plain English

AI plain-English summary

African scientists will use the UK’s Diamond Light Source synchrotron to design better solar cells and catalysts, and to map the molecular structures of diseases such as tuberculosis and malaria. The problem is twofold. Across Africa, many people lack access to reliable electricity, and existing energy devices degrade quickly in heat and dust. Meanwhile, diseases like tuberculosis and malaria remain devastating, and developing cures requires knowing the atomic shapes of the proteins involved. Synchrotron radiation is essential for both tasks, but most African countries lack the equipment and expertise to use it. If START succeeds, it will train a generation of African researchers to fabricate and characterise energy materials and to solve protein structures at synchrotrons. That could lead to cheaper, more durable solar panels and batteries suited to off-grid use, and to new drug targets for neglected diseases. The project also strengthens a network of synchrotron users across Africa, reducing reliance on burning fossil fuels and improving healthcare. The work directly supports UN Sustainable Development Goals on clean energy, climate action, and good health.

View original technical description
START is a proposal to utilise Synchrotron Techniques for African Research and Technology. It will build a partnership between world leading scientists in Africa and the UK who specialise in two strands of science; developing and characterising novel energy materials (catalysts and photovoltaics) and structural biology (understanding disease and developing drug targets). In START the research direction will be set by considering the local environment and through engagement with scientists, energy industry representatives and relevant non-governmental organisations (NGO's) across Africa. Most importantly, START is not only about developing new energy materials or structural biology research; equally important is training the next generation of researchers and research leaders in these important areas of study. We will work together in sample fabrication and advanced characterisation through training visits between African and UK institutes. This will include experimental time at Diamond Light Source (the UK national synchrotron source) through peer reviewed access to many of the experimental facilities and in techniques that are the mainstay of understanding these materials. A major ambition of this partnership is to strengthen and broaden the network of synchrotron researchers in Africa, where there is a burgeoning ambition to exploit such facilities. This talent development will benefit the researchers themselves but also the local communities, society in general and the environment, through the reduction of burning fossil fuels and improved healthcare. There are unique challenges to developing sustainable energy in Africa; the large fraction of off-grid consumers, the degradation of energy devices in an environment of heat and dust and the high initial capital costs for traditional installations of energy production or storage systems. Similarly challenging is addressing the health needs on the African continent, where diseases like tuberculosis and malaria negatively affect whole societies. The first step to finding and developing cures is to understand the molecular structure. Thus for both strands of research, synchrotron radiation for structure determination is at the core of scientific progress. It is critical that the countries in Africa expand their own capabilities to produce the next generation of appropriate energy materials and development of cures for relevant diseases. START aims to aid those developments through building the capacity and capability of African based scientists in both strands. The START team is driven by the ambition to work together to solve these two strands of research, addressing some of the most pressing problems that will directly impact on peoples lives. This proposal is directly in line with the development aspirations of the African Nations who have a stated ambition to 'transform Africa from traditional to modern sources of energy and ensure access of all Africans to clean and affordable electricity' and 'Develop/implement strategies for the growth of the pharmaceutical industry in Africa'. Our aspirations are furthermore directly in line with the United Nations Sustainable Development Goals of Affordable and Clean Energy (Goal 7) and Climate Action (Goal 13) as well as Goal 3 (Good Health and Well-Being). START will help to contribute in all of these areas, which crucially underpin many of the further Sustainable Development Goals.

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Researchers

Alberdina Aike Van Dijk (Co-Investigator)Benedict Molibeli Taele (Co-Investigator)Bryan Sewell (Co-Investigator)Chris Nicklin (Principal Investigator)David Billing (Co-Investigator)David George Lidzey (Co-Investigator)Diederik Opperman (Co-Investigator)Edward Sturrock (Co-Investigator)Erick Strauss (Co-Investigator)Ghada Bassioni (Co-Investigator)Gwyndaf Evans (Co-Investigator)Jeremy Woodward (Co-Investigator)Lynn Morris (Co-Investigator)Michael Claeys (Co-Investigator)Moritz Riede (Co-Investigator)Peter Wells (Co-Investigator)Phuti Ngoepe (Co-Investigator)Richard Catlow (Co-Investigator)Sofia Diaz-Moreno (Co-Investigator)Teketel Yohannes Anshebo (Co-Investigator)Wolf-Dieter Schubert (Co-Investigator)Yasien Sayed (Co-Investigator)

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Original classification

Research Grant

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