Surfactant-less Ag@Au decorated U-bent fiber optic probes for plasmonic sensing

J. K. Shamlee, Hariharan Manoharan, V. Sai
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Abstract

This study reports a simple and tunable surfactant-less seed-mediated growth synthesis technique for Ag@Au core-shell nanoparticles coated over the U-bent fiber optic probes. The synthesis root involves the immobilization of Au seeds on the aminated probe surface (A520nm= 0.05). The core was formed by the ascorbic acid-mediated reduction of Ag around the Au seed. The shell was formed by a passive deposition of Au over the Ag core. The entire process was monitored in real-time to tune the plasmonic property. The evanescent wave absorbance peak of Ag core was at 470 nm (A470nm = 2) and Au shell at 560 nm (A560nm = 2). A high refractive index (RI) sensitivity of 27.5 ΔAbsorbance/RIU was obtained. The absence of surfactant allows easier functionalization as opposed to the conventional seed-mediated synthesis techniques with C-TAB capping and a stronger adhesion of the plasmonic nanostructures
无表面活性剂Ag@Au装饰u型弯曲光纤探针等离子体传感
本研究报告了一种简单且可调的无表面活性剂种子介导生长合成技术,用于在u型弯曲光纤探针上涂覆Ag@Au核壳纳米颗粒。合成根是将Au种子固定在胺化探针表面(A520nm= 0.05)。核心是由抗坏血酸介导的Ag在Au种子周围的还原形成的。壳层是由金在银核上的被动沉积形成的。整个过程被实时监控以调整等离子体特性。Ag核在470nm处(A470nm = 2)和Au壳在560nm处(A560nm = 2)出现倏逝波吸收峰,获得了27.5 ΔAbsorbance/RIU的高折射率(RI)灵敏度。与传统的带有C-TAB盖层的种子介导合成技术相比,缺乏表面活性剂可以更容易地实现功能化,并且等离子体纳米结构的附着力更强
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