Caught on camera – chemical reactions 'filmed' at the single-molecule level

 chemTEMpr
22 Mar 2017 08:30:00.000

 

Scientists have succeeded in ‘filming’ inter-molecular chemical reactions – using the electron beam of a transmission electron microscope (TEM) as a stop-frame imaging tool. They have also discovered that the electron beam can be simultaneously tuned to stimulate specific chemical reactions by using it as a source of energy as well as an imaging tool.

This research – which shows chemical reactions happening in real time at one hundred-millionth of a centimeter - has the potential to revolutionise the study and development of new materials. It could help answer some of the most fundamental and challenging questions of chemical science; such as how molecules react with each other at the atomistic level; what drives formation of one product instead of another; as well as aid the discovery of brand new chemical reactions.

The multi-national team of experts from the UK, Germany and Russia, was led by Andrei Khlobystov, a Professor of Nanomaterials and Director of the University of Nottingham’s Nanoscale and Microscale Research Centre. The study: ‘Stop-frame filming and discovery of reactions at the single-molecule level by transmission electron microscopy’ has been published in ACS Nano, a flagship nanoscience and nanotechnology journal and selected as ACS Editor’s Choice due to its potential for broad public interest.

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Note to editors: More information is available from Professor Andrei Khlobystov on +44 (0) 115 951 3917, andrei.khlobystov@nottingham.ac.uk
Lindsay Brooke

Lindsay Brooke - Media Relations Manager

Email: lindsay.brooke@nottingham.ac.uk Phone: +44 (0)115 951 5751 Location: University Park

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