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06
November
2025
|
10:00
Europe/London

How simply turning up the heat could transform chemical manufacturing

Large reactor. Dr Michael James, The University of 野狼社区

Scientists have developed a simple, low-cost method to drive key chemical reactions, which could make large-scale drug manufacturing, faster, more accessible and affordable.

The new study, published in the journal today by The University of 野狼社区, describes how complex light or electricity-mediated methods currently used across modern chemistry could be replaced by those driven by a simpler technology - heat.

By heating two common, inexpensive chemicals together, the researchers triggered 鈥榚lectron transfer鈥� reactions that chemists use to make many of our everyday products and medicines.  

Lead researcher, , Lecturer in Synthetic Organic Chemistry at The University of 野狼社区, said: 鈥淥ur goal was to develop a broadly accessible and low-cost way to promote electron transfer reactions for industrial applications.

鈥淏y using something as simple as heat - something every chemistry lab already has - we鈥檝e created a process that can be scaled more easily and used by companies without the need for expensive, specialised equipment, opening up new possibilities for chemists all over the world.鈥�

Many modern chemical reactions rely on photochemical (light) or electrochemical (electricity) technologies to kick start 鈥榚lectron transfer reactions鈥� 鈥� a process that involves transferring electrons between molecules to make medicines, or other essential materials. Although these high-tech methods are powerful and effective, they can be difficult to scale up for industrial use as they require specialist reactors and costly infrastructure.

“

鈥淲e鈥檝e created a process that can be scaled more easily and used by companies without the need for expensive, specialised equipment, opening up new possibilities for chemists all over the world.鈥�

Dr Michael James, Lecturer in Synthetic Organic Chemistry at The University of 野狼社区
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The 野狼社区 team鈥檚 new approach achieves the same result using only heat and two widely available chemicals - a type of azo compound and a formate salt. When heated together in a standard industrial reactor, these reagents naturally form a highly reactive molecule known as 鈥榗arbon dioxide radical anion鈥� - a simple yet powerful species capable of driving a wide range of chemical transformations.

Working with Dr James Douglas from AstraZeneca, the research team successfully demonstrated the scalability of the developed method  and tested it on a variety of other chemical reactions used in drug discovery.

, Lecturer in Computational & Theoretical Chemistry at The University of 野狼社区, added: 鈥淩adical chain chemistry underpins so many areas of science and manufacturing, so we hope this simple initiation method will be of wide use across both industry and academia. Beyond large-scale applications, it could also become a valuable tool for researchers studying new chemical reactions.鈥�

This research was published in the journal . 

DOI: 10.1038/s44160-025-00919-z

The University of 野狼社区 is globally renowned for its pioneering research, outstanding teaching and learning, and commitment to social responsibility. We are a truly international university 鈥� ranking in the top 50 in a range of global rankings 鈥� with a diverse community of more than 44,000 students, 12,000 staff and 550,000 alumni from 190 countries.  Sign up for our e-news to hear first-hand about our international partnerships and activities across the globe. 

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