IRMA-International.org: Creator of Knowledge
Information Resources Management Association
Advancing the Concepts & Practices of Information Resources Management in Modern Organizations

Employing Nano-Sensors for Explosives Detection

Employing Nano-Sensors for Explosives Detection
View Sample PDF
Author(s): Mubeen Khalid (University of Health Sciences, Pakistan), Muhammad Farhan Khan (University of Health Sciences, Pakistan)and Shahid Nazir (University of Health Sciences, Pakistan)
Copyright: 2023
Pages: 22
Source title: Modeling and Simulation of Functional Nanomaterials for Forensic Investigation
Source Author(s)/Editor(s): Allah Rakha (Department of Forensic Medicine/Medical Jurisprudence, University of Health Sciences, Pakistan), Anam Munawar (Department of Forensic Medicine/Medical Jurisprudence, University of Health Sciences, Pakistan), Virat Khanna (Maharaja Agrasen University, India)and Suneev Anil Bansal (Department of Mechanical Engineering, Bharat Institute of Engineering and Technology, India)
DOI: 10.4018/978-1-6684-8325-1.ch008

Purchase

View Employing Nano-Sensors for Explosives Detection on the publisher's website for pricing and purchasing information.

Abstract

This chapter presents the potential of the application of nano-sensors for trace explosive detection. A major challenge faced in detecting trace explosives is the detection of ultra-low quantities of trace compounds. This chapter discusses the selective and sensitive detection of trace explosives by employing nano-sensors, limitations of detecting trace explosives, and reevaluates the current technologies that are inefficient and inaccurate for trace explosive detection. Application of nano-sensors for the exposure of low concentration explosive compounds is an effective platform in the advancement of trace explosive detection.

Related Content

Takaomi Kobayashi. © 2025. 32 pages.
Karla L. Tovar Carrillo, Ayano Ibaraki, Takaomi Kobayashi. © 2025. 28 pages.
Shoji Nagaoka, Maki Horikawa, Tomohiro Shirosaki. © 2025. 34 pages.
Huixin Jiang, Hannah Snider, Xianhui Zhao, Saurabh Prakash Pethe, Shuvodeep De, Tolga Aytug, Soydan Ozcan, Kashif Nawaz, Kai Li. © 2025. 24 pages.
Takaomi Kobayashi. © 2025. 36 pages.
Takaomi Kobayashi, Debbie Dominic, Nurul Alia Syufina Abu Bakar, Siti Baidurah. © 2025. 14 pages.
Truong Thi Cam Trang, Khoa Dang Nguyen. © 2025. 34 pages.
Body Bottom