Numan Arshid, Singh Prabh Simran, Alam Aftab, Khalid Mohammad, Li Lijie, Singh Sima
Graphene & Advanced 2D Materials Research Group (GAMRG), School of Engineering and Technology, Sunway University, 5, Jalan University, Bandar Sunway, 47500 Petaling Jaya, Selangor, Malaysia.
Department of Pharmaceutical Chemistry, Khalsa College of Pharmacy, Amritsar 143001, Punjab, India.
ACS Omega. 2022 Jul 29;7(31):27079-27089. doi: 10.1021/acsomega.2c03645. eCollection 2022 Aug 9.
Efficient and simple detection of chemical warfare agents (CWAs) is an essential step in minimizing the potentially lethal consequences of chemical weapons. CWAs are a family of organic chemicals that are used as chemical weapons because of their enormous severity and lethal effects when faced with unforeseen challenges. To stop the spread of CWAs, it is critical to develop a platform that detects them in a sensitive, timely, selective, and minimally invasive manner. Rapid advances in the demand for on-site sensors, metal nanoparticles, and biomarker identification for CWAs have made it possible to use fluorescence as a precise real-time and point-of-care (POCT) testing technique. For POCT-based applications, the new capabilities of micro- and nanomotors offer enormous prospects. In recent decades, significant progress has been made in the design of fluorescent sensors and the further development of noble metal nanoparticles for the detection of organophosphorus CWAs, as described in this review. Through this work, recent attempts to fabricate sensors that can detect organophosphorus CWAs through changes in their fluorescence properties have been summarized. Finally, an integrated outlook on how noble metal nanoparticles could be used to develop smart sensors for organophosphorus CWAs that communicate with and control electronic devices to monitor and improve the health of individuals.
高效且简便地检测化学战剂(CWAs)是将化学武器潜在致命后果降至最低的关键一步。化学战剂是一类有机化学品,因其在面对不可预见的挑战时具有极大的严重性和致命影响而被用作化学武器。为阻止化学战剂的扩散,开发一个能够以灵敏、及时、选择性且微创的方式检测它们的平台至关重要。对现场传感器、金属纳米颗粒以及化学战剂生物标志物识别的需求迅速增长,使得利用荧光作为一种精确的实时和即时检测(POCT)技术成为可能。对于基于POCT的应用,微型和纳米马达的新功能提供了巨大的前景。近几十年来,在荧光传感器的设计以及用于检测有机磷化学战剂的贵金属纳米颗粒的进一步开发方面取得了重大进展,如本综述所述。通过这项工作,总结了近期制造能够通过荧光特性变化检测有机磷化学战剂的传感器的尝试。最后,对如何利用贵金属纳米颗粒开发用于有机磷化学战剂的智能传感器进行了综合展望,这些传感器可与电子设备通信并控制电子设备,以监测和改善个人健康状况。