Zhang Hui, Chen Yaofei, Wang Hao, Hu Shiqi, Xia Kai, Xiong Xin, Huang Wenjuan, Lu Huihui, Yu Jianhui, Guan Heyuan, He Miao, Liu Weiping, Zhang Jun, Luo Yunhan, Xie Zhiping, Chen Zhe
Opt Express. 2018 Dec 10;26(25):33226-33237. doi: 10.1364/OE.26.033226.
A surface plasmon resonance (SPR) biosensor, which contains an overlayer of titanium dioxide nanoparticles (TDNPs) to modify the plasmonic interface, has been developed and investigated. Owing to its large surface area and high refractive index, the TDNP overlayer significantly enhances the probing electric field intensity and detection sensitivity. This sensitivity is related to the TDNP overlayer thickness, which can be engineered by changing the TiO-ethanol dispersion's spin-coating concentration. The highest refractive index sensitivity for ethylene glycol measurement is 2567.3 nm/RIU, which is 38% higher than that of a conventional SPR sensor with an uncoated gold film. The proposed TDNP-SPR sensor also exhibits a 1.59-fold sensitivity enhancement in fetal bovine serum detection. Moreover, the proposed interface modification approach that is applied without additional biochemical amplification steps is chemical-free and contamination-free; therefore this TDNP-SPR sensor could be integrated into a sensitive, cost-effective, and biocompatible platform for rapid and label-free biochemical detection.
一种表面等离子体共振(SPR)生物传感器已被开发并研究,该传感器包含一层二氧化钛纳米颗粒(TDNP)以修饰等离子体界面。由于其大表面积和高折射率,TDNP覆盖层显著增强了探测电场强度和检测灵敏度。这种灵敏度与TDNP覆盖层厚度有关,可通过改变TiO-乙醇分散体的旋涂浓度来设计。用于乙二醇测量的最高折射率灵敏度为2567.3 nm/RIU,比具有未涂覆金膜的传统SPR传感器高38%。所提出的TDNP-SPR传感器在胎牛血清检测中也表现出1.59倍的灵敏度增强。此外,所提出的无需额外生化扩增步骤的界面修饰方法无化学物质且无污染;因此,这种TDNP-SPR传感器可集成到一个用于快速和无标记生化检测的灵敏、经济高效且生物相容的平台中。