Electronic Nose Smells Pesticides and Nerve Gas
July 6, 2016 | KU LeuvenEstimated reading time: 1 minute

Detecting pesticides and nerve gas in very low concentrations. An international team of researchers led by Ivo Stassen and Rob Ameloot from KU Leuven, Belgium, have made it possible.
The best-known electronic nose is the breathalyser. As drivers breathe into the device, a chemical sensor measures the amount of alcohol in their breath. This chemical reaction is then converted into an electronic signal, allowing the police officer to read off the result. Alcohol is easy to detect, because the chemical reaction is specific and the concentration of the measured gas is fairly high. But many other gases are complex mixtures of molecules in very low concentrations. Building electronic noses to detect them is thus quite a challenge.
Researchers from KU Leuven have now built a very sensitive electronic nose with metal-organic frameworks (MOFs). "MOFs are like microscopic sponges," postdoctoral researcher Ivo Stassen explains. "They can absorb quite a lot of gas into their minuscule pores."
"We created a MOF that absorbs the phosphonates found in pesticides and nerve gases. This means you can use it to find traces of chemical weapons such as sarin or to identify the residue of pesticides on food. This MOF is the most sensitive gas sensor to date for these dangerous substances. Our measurements were conducted in cooperation with imec, the Leuven-based nanotechnology research centre. The concentrations we're dealing with are extremely low: parts per billion - a drop of water in an Olympic swimming pool - and parts per trillion."
The chemical sensor can easily be integrated into existing electronic devices, Professor Rob Ameloot adds. "You can apply the MOF as a thin film over the surface of, for instance, an electric circuit. Therefore, it's fairly easy to equip a smartphone with a gas sensor for pesticides and nerve gas."
"Further research will allow us to examine other applications as well," Professor Ameloot continues. "MOFs can measure very low concentrations, so we could use them to screen someone's breath for diseases such as lung cancer and MS in an early stage. Or we could use the signature scent of a product to find out whether food has gone bad or to distinguish imitation wine from the original. This technology, in other words, offers a wide range of perspectives."
Suggested Items
'Chill Out' with TopLine’s President Martin Hart to Discuss Cold Electronics at SPWG 2025
05/02/2025 | TopLineBraided Solder Columns can withstand the rigors of deep space cold and cryogenic environments, and represent a robust new solution to challenges facing next generation large packages in electronics assembly.
Alternative Manufacturing Inc. (AMI) Appoints Gregory Picard New Business Development Manager
05/01/2025 | Alternative Manufacturing, Inc.Alternative Manufacturing Inc. (AMI) is pleased to announce the appointment of Mr. Gregory Picard as our new Business Development Manager. Picard brings a wealth of experience in Sales and Business Development, having worked with some of the most prominent names in the industry.
Indium Wins EM Asia Innovation Award
05/01/2025 | Indium CorporationIndium Corporation, a leading materials provider for the electronics assembly market, recently earned an Electronics Manufacturing (EM) Asia Innovation Award for its new high-reliability Durafuse® HR alloy for solder paste at Productronica China in Shanghai.
Discover the Future of AI in Test and Inspection in the May 2025 Issue of SMT007 Magazine
05/01/2025 | I-Connect007 Editorial TeamAre you ready to explore the cutting-edge advancements in AI shaping the electronics manufacturing industry through test and inspection? The May 2025 issue of SMT007 Magazine provides insights, innovations, and perspectives from today's top experts you won't find anywhere else.
IPC Excellence in Education Award: Zenaida Valianu
05/01/2025 | Nolan Johnson, I-Connect007Zenaida Valianu is the training manager at IPC who brings more than 25 years of expertise in standards and training development to her role. She has revolutionized IPC certification training programs by significantly enhancing their content with comprehensive curricula and engaging materials. She has also been instrumental in developing essential workforce training courses and contributing to various other initiatives.