Potdar Revati P, Khollam Yogesh B, Shaikh Shoyebmohamad F, More Pravin S, Rana Abu Ul Hassan S
Nanomaterials Application Laboratory, The Institute of Science, Dr. Homi Bhabha State University, Mumbai 400032, India.
Research Centre in Physics, Department of Physics, Baburaoji Gholap College, Sangvi, Pune 411027, India.
Nanomaterials (Basel). 2022 Sep 27;12(19):3373. doi: 10.3390/nano12193373.
Herein, aqueous ammonium sensing characteristics of polyvinylpyrrolidone (PVP) capped silver nanoparticles (Ag-NPs) coated optical fiber-based sensors are presented. The PVP-capped Ag-NPs were prepared using cold and modified polyol synthesis methods. Aqueous ammonium detection was carried out by the surface plasmon resonance (SPR) effect observed in the Ag-NPs coated optical fiber system. The effect of cold and modified polyol synthesis methods on optical sensing performance was studied. The optical fiber cladding was modified with PVP-capped Ag-NPs according to the standard protocol for sensing investigation. The probe sensing response was analyzed for varying concentrations of ammonium ions on red, green, and blue LEDs. The sensor characteristics, viz., sensing response, repeatability, calibration curve, and ambient light effect, were investigated for PVP capped Ag-NPs coated optical fiber-based sensor. The PVP capped Ag-NPs synthesized via the polyol synthesis method showed a detection limit of 48.9 mM, 1.33 mV/M sensitivity, and an excellent linear relationship (R = 0.9992) between voltage and ammonium ion concentration in the range of 0.054-13.4 M concentration. On the other hand, PVP capped Ag-NPs synthesized using the cold synthesis method showed a detection limit of 159.4 mM, a sensitivity of 0.06 mV/M, and a poor linear relationship (R = 0.4588) between voltage and ammonium ion concentration in the range of 0.054-13.4 M concentration. The results indicate that the PVP-capped Ag-NPs synthesized using the polyol synthesis method exhibit enhanced ammonium ion sensing compared to the cold synthesis method.
本文介绍了基于聚乙烯吡咯烷酮(PVP)包覆银纳米颗粒(Ag-NPs)的光纤传感器对铵水溶液的传感特性。采用冷法和改进的多元醇合成法制备了PVP包覆的Ag-NPs。通过在Ag-NPs包覆光纤系统中观察到的表面等离子体共振(SPR)效应进行铵水溶液检测。研究了冷法和改进的多元醇合成法对光学传感性能的影响。根据传感研究的标准方案,用PVP包覆的Ag-NPs对光纤包层进行了改性。分析了红色、绿色和蓝色发光二极管(LED)上不同浓度铵离子的探针传感响应。研究了基于PVP包覆Ag-NPs的光纤传感器的传感特性,即传感响应、重复性、校准曲线和环境光效应。通过多元醇合成法合成的PVP包覆Ag-NPs在浓度范围为0.054-13.4 M时,检测限为48.9 mM,灵敏度为1.33 mV/M,电压与铵离子浓度之间具有良好的线性关系(R = 0.9992)。另一方面,采用冷合成法合成的PVP包覆Ag-NPs在浓度范围为0.054-13.4 M时,检测限为159.4 mM,灵敏度为0.06 mV/M,电压与铵离子浓度之间的线性关系较差(R = 0.4588)。结果表明,与冷合成法相比,采用多元醇合成法合成的PVP包覆Ag-NPs对铵离子的传感性能增强。