HomeTechnologyElectronic Polymer Based low-cost Sensor Developed to Detect Explosives Rapidly

Electronic Polymer Based low-cost Sensor Developed to Detect Explosives Rapidly

Indian scientists, for the first time, have developed a thermally stable and cost-effective electronic polymer-based sensor for rapidly detecting nitro-aromatic chemicals used in high-energy explosives. The detection of explosives without destroying them is essential for protection, and criminal investigations, minefield remediation, military applications, ammunition remediation sites, security applications, and chemical sensors play a vital role in such cases.

Though explosive poly-nitroaromatic compounds can be analyzed usually by sophisticated instrumental techniques, the requirements for quick decision making in criminology laboratories or reclaimed military sites or to detect explosives in possession of extremists often require simple, cheap, and selective field techniques which will be non-destructive in nature. Non-destructive sensing of nitroaromatic chemicals (NACs) is difficult. While earlier studies are based mostly on photo-luminescent property, detection of the basis of conducting property has not been explored so far. Detection on the basis of conducting property helps in making a handy detection device where results can be seen with the help of a LED.

To overcome such disadvantages, a team of scientists led by Dr Neelotpal Sen Sarma from the Institute of Advanced Study in Science and Technology, Guwahati, an autonomous institute of the Department of Science & Technology, Government of India, has developed a layer by layer (LBL) polymer detector consisting of two organic polymers — poly-2-vinyl pyridine with acrylonitrile (P2VP-Co-AN) and copolysulfone of cholesterol methacrylate with hexane (PCHMASH), which undergoes a drastic change in impedance (resistance in an ac circuit) in the presence of very low concentration of NACs vapour within few seconds. Here, picric acid (PA) was chosen as the model NAC, and a simple and cost-effective electronic prototype was developed for visual detection of PA. The team has filed a patent for the novel technology funded by DeitY, GoI.

“An electronic sensing device build around a polymer gas sensor can quickly detect the explosive on-site,” said Dr Neelotpal Sen Sarma.

The sensor device comprises of three layers–polymers copolysulfone of cholesteryl methacrylate along with 1-hexene (PCHMASH), and a copolymer of poly-2-vinyl pyridine with acrylonitrile by sandwiching PCHMASH in between two P2VP-Co-AN outer layers by stainless steel (SS) mesh. The sensitivity of the system is determined by monitoring the change in the impedance response with time (sec) in the presence of the vapour of the analyte (picric acid).

The tri-layer polymer matrix was found to be a very efficient molecular sensor for nitroaromatic chemicals. The sensor device is quite simple and reversible in nature, and its response does not alter with varying operating temperature in presence of other common chemicals and humidity.

The device can be operated at room temperature, has a low response time and negligible interference from other chemicals. The fabrication is very simple, is negligibly affected by humidity, and the cholesterol-based polymers used are biodegradable.

ELE Times Research Desk
ELE Times Research Deskhttps://www.eletimes.ai
ELE Times provides extensive global coverage of Electronics, Technology and the Market. In addition to providing in-depth articles, ELE Times attracts the industry’s largest, qualified and highly engaged audiences, who appreciate our timely, relevant content and popular formats. ELE Times helps you build experience, drive traffic, communicate your contributions to the right audience, generate leads and market your products favourably.

Related News

Must Read

Bosch Accelerates Automation and Robotics Drive

Advance robotics and the dynamic growth of humanoid systems...

AI server Boards are Boosting at ASMPT SMT Solutions

Solutions, a global technology manufacturer of hardware and software....

Bosch Introduces Third-Gen Silicon Carbide Chips for EV

As India accelerates its transition to electric mobility, the...

Vishay Extends ILHB Ferrite Beads for Wider Automotive EMC Support

Vishay Intertechnology, Inc. announces an expansion of its ILHB...

Qorvo’s New Compact Front-End Redefines X-Band Radar Performance

Qorvo introduces an X-band radar front-end solution that enables...

STMicroelectronics Unveils Ultra-Precise Automotive IMU

The ASM330LHHG1 automotive qualifies as an Inertial Measurement Unit...

TI Launches a High-Cell-Count Battery Monitor featuring EIS

Engineers can build safer, higher-performing electric vehicles and energy...

DigiKey Expands Asian Electronics Industry with Launch of Vietnam Website

The localized website reinforces DigiKey’s commitment to supporting Vietnam’s...

Implantable and Non-Invasive Continuous Health Sensors

Continuous health monitoring is transforming modern medicine. Instead of...