Department of Chemistry and ‡Centre for Nanotechnology, Indian Institute of Technology Guwahati , Guwahati-781039. India.
ACS Appl Mater Interfaces. 2015 Dec 9;7(48):26968-76. doi: 10.1021/acsami.5b08068. Epub 2015 Nov 25.
Spontaneously formed conjugated polymer nanoparticles (CPNs) or polymer dots displayed remarkable fluorescence response toward nitroexplosive-picric acid (PA) in multiple environments including 100% aqueous media, solid support using portable paper strips and vapor phase detection via two terminal device. This new cationic conjugated polyelectrolyte (CPE) poly(3,3'-((2-phenyl-9H-fluorene-9,9-diyl)bis(hexane-6,1-diyl))bis(1-methyl-1H-imidazol-3-ium)bromide) (PFMI) was synthesized by Suzuki coupling polymerization followed by post functionalization method without employing any hectic purification technique. Highest quenching constant value (K(sv)) of 1.12 × 10(8) M(-1) and a very low detection limit of 30.9 pM/7.07 ppt were obtained exclusively for PA in 100% aqueous environment which is rare and unique for any CPE/CPNs. Contact mode detection of PA was also performed using simple, cost-effective and portable fluorescent paper strips for achieving on-site detection. Furthermore, the two terminal sensor device fabricated with nanoparticles of PFMI (PFMI-NPs) provides an exceptional and unprecedented platform for the vapor mode detection of PA under ambient conditions. The mechanism for the ultrasensitivity of PFMI-NPs probe to detect PA is attributed to the "molecular-wire effect", electrostatic interaction, photoinduced electron transfer (PET), and possible resonance energy transfer (RET).
自发形成的共轭聚合物纳米粒子(CPNs)或聚合物点在包括 100%水介质、使用便携式纸条的固体支持以及通过二端设备的气相检测在内的多种环境中对硝基爆炸物-苦味酸(PA)表现出显著的荧光响应。这种新的阳离子共轭聚电解质(CPE)聚(3,3'-(2-苯基-9H-芴-9,9-二基)双(己烷-6,1-二基))双(1-甲基-1H-咪唑-3-鎓)溴化物(PFMI)是通过 Suzuki 偶联聚合后进行后功能化方法合成的,而无需采用任何繁琐的纯化技术。在 100%水环境中,PA 获得了最高的猝灭常数值(Ksv)为 1.12×10(8) M(-1)和非常低的检测限为 30.9 pM/7.07 ppt,这在任何 CPE/CPNs 中都是罕见和独特的。还使用简单、经济高效且便携式的荧光纸条进行接触模式检测,以实现现场检测。此外,使用 PFMI 纳米粒子(PFMI-NPs)制造的二端传感器设备为在环境条件下对 PA 进行气相检测提供了一个出色且前所未有的平台。PFMI-NPs 探针对 PA 进行超灵敏检测的机制归因于“分子线效应”、静电相互作用、光诱导电子转移(PET)和可能的共振能量转移(RET)。