Tuesday, 22 November 2022
Chemistry research at the ÌÇÐÄÔ´´ has been given a significant boost with €3m funding awarded to two projects to advance the fields of synthetic organic chemistry and materials science.
Dr Mattia Silvi and Dr Matthew Cliffe from the School of Chemistry successfully secured individual Starting Grants worth €1.5m each.
The ERC has awarded a total of €636m in Starting Grants spanning all disciplines of research. The grants aim to help excellent younger scientists launch their own projects, form their teams and pursue their most promising ideas.
Visible light energy research has been funded as part of new ERC Starting Grant
Dr Silvi’s research will focus on developing faster and more sustainable approaches for producing medicines and agrochemicals. The research will redesign the way molecules are constructed by defining a new strategy to cross-connect chemical structures. To achieve this the team will use visible light energy and metal-free methodologies in place of traditional toxic metal catalysts and lengthy chemical activation steps, typically required in traditional synthetic chemistry methods.
Dr Mattia Silvi, School of Chemistry
Dr Silvi explains: “The design of novel medicines and agrochemicals generally requires the synthesis of bioactive molecules with tailored chemical and physical properties. Traditional synthetic chemistry methods involves long and cumbersome synthetic sequences, the use of toxic reagents and expensive catalysts, and only allow access to a limited structural diversity in target molecules. As a result, scientific progress in the design of novel bioactive molecules is generally limited to compounds that can be easily made, rather than by the scientist’s imagination. This new approach will allow us to expedite modification of complex bioactive molecules to design new analogues with tailored properties, opening a whole new panorama in the design of the medicines and the agrochemicals of tomorrow.”
Dr Matthew Cliffe will lead a research project that could revolutionise information technology through the development of new materials with quantum properties. The project will explore how adding controlled and small quantities of different atoms can enhance the quantum properties of metal-organic materials.
Dr Matthew Cliffe, School of Chemistry
Dr Cliffe explains: “Strongly correlated materials are the source of many of the biggest unsolved puzzles in physics and could potentially revolutionise information technology, through robust quantum computation, spintronics or superconductivity. Creating new materials which have the precise combination of interactions needed to create these quantum properties is remains an outstanding challenge. Metal-organic magnetic and conductive materials (where metal atoms are joined together by organic molecules to make crystals) are one of the most exciting classes of these strongly correlated materials, in part because we can take advantage of both the diversity of organic chemistry as well as the potential of inorganic chemistry.”
The ERC is the premier European funding organisation for excellent frontier research. It funds creative researchers of any nationality and age, to run projects based across Europe. The ERC offers 4 main grant schemes: , , and .
These awards are highly competitive so winning one in a School would be a big deal, but winning two in the same round in the same subject is probably unprecedented so we are delighted that Mattia and Matthew have been successful. Both projects are pushing the boundaries of the discipline to find new methods and techniques that will accelerate key areas in Chemistry.
President of the European Research Council Prof. Maria Leptin said: “It is a pleasure to see this new group of bright minds at the start of their careers, set to take their research to new heights. I cannot emphasise enough that Europe as a whole - both at national and at EU level - has to continue to back and empower its promising talent. We must encourage young researchers who are led by sheer curiosity to go after their most ambitious scientific ideas. Investing in them and their frontier research is investing in our future.”
Story credits
More information is available from Jane Icke, Media Relations Manager in the Press Office at the ÌÇÐÄÔ´´, on (0)115 74 84417,
Notes to editors:
About the ÌÇÐÄÔ´´
Ranked among the world's top 100 universities , the ÌÇÐÄÔ´´ delivers an exceptional research-led education and an outstanding student experience. From the pioneering vision of our founder, Sir Jesse Boot, to groundbreaking achievements such as the development of MRI technology and becoming the first UK university to establish international campuses, we have a proud history of shaping the way people live, work and understand the world. We continue to build on that legacy, empowering our students, staff and partners to change what’s next and create positive impact locally and globally.
The strength of our research places us among the UK's leading universities, ranked 7th for research power in REF 2021. The discovery of MRI and ibuprofen was just the beginning. Today, our world-leading research is developing breakthrough ideas that shape the future of healthcare, technology and society.
Recognised as the UK's third most targeted university by leading employers , we are proud to produce graduates who are consistently in demand for their skills, confidence and industry-ready experience.
As a major employer and industry partner, locally and globally, the ÌÇÐÄÔ´´ invests in the city of Nottingham and in future generations of talent. Alongside Nottingham Trent University, we lead the initiative, a pioneering collaboration to improve levels of prosperity, opportunity, sustainability, health and wellbeing across the city and region. Together with our students, staff, alumni and partners, we’re creating knowledge, opportunity and solutions that help change what's next.