Korea Advanced Institute of Science and Technology (KAIST), Department of Bio and Brain Engineering,, Republic of Korea.
Korea Advanced Institute of Science and Technology (KAIST), KAIST Institute for Health Science and T, Republic of Korea.
J Biomed Opt. 2019 Mar;24(3):1-6. doi: 10.1117/1.JBO.24.3.037001.
We report a fiber-optic plasmonic probe with nanogap-rich gold nanoislands for on-site surface-enhanced Raman spectroscopy (SERS). The plasmonic probe features nanogap-rich Au nanoislands on the top surface of a single multimode fiber. Au nanoislands were monolithically fabricated using repeated solid-state dewetting of thermally evaporated Au thin film. The plasmonic probe shows 7.8 × 106 in SERS enhancement factor and 100 nM in limit-of-detection for crystal violet under both the excitation of laser light and the collection of SERS signals through the optical fiber. The fiber-through measurement also demonstrates the label-free SERS detection of folic acid at micromolar level. The plasmonic probe can provide a tool for on-site and in vivo SERS applications.
我们报告了一种光纤等离子体探针,该探针具有富含纳米间隙的金纳米岛,用于现场表面增强拉曼光谱(SERS)。该等离子体探针的特点是在单模光纤的顶表面上具有富含纳米间隙的 Au 纳米岛。Au 纳米岛是通过热蒸发 Au 薄膜的重复固态去湿来整体制造的。该等离子体探针在激光激发和通过光纤收集 SERS 信号下,对结晶紫的 SERS 增强因子分别达到了 7.8×106 和 100 nM,检测限为 100 nM。光纤透过测量还证明了对微摩尔级叶酸的无标记 SERS 检测。该等离子体探针可为现场和体内 SERS 应用提供工具。