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用于基于表面等离子体共振的光纤苯肼传感器的Al@ZnO核壳纳米结构的场分布调控与制备

Tuning the field distribution and fabrication of an Al@ZnO core-shell nanostructure for a SPR-based fiber optic phenyl hydrazine sensor.

作者信息

Tabassum Rana, Kaur Parvinder, Gupta Banshi D

机构信息

Physics Department, Indian Institute of Technology Delhi, New Delhi-110016, India.

出版信息

Nanotechnology. 2016 May 27;27(21):215501. doi: 10.1088/0957-4484/27/21/215501. Epub 2016 Apr 15.

DOI:10.1088/0957-4484/27/21/215501
PMID:27079452
Abstract

We report the fabrication and characterization of a surface plasmon resonance (SPR)-based fiber optic sensor that uses coatings of silver and aluminum (Al)-zinc oxide (ZnO) core-shell nanostructure (Al@ZnO) for the detection of phenyl hydrazine (Ph-Hyd). To optimize the volume fraction (f) of Al in ZnO and the thickness of the core-shell nanostructure layer (d), the electric field intensity along the normal to the multilayer system is simulated using the two-dimensional multilayer matrix method. The Al@ZnO core-shell nanostructure is prepared using the laser ablation technique. Various probes are fabricated with different values of f and an optimized thickness of core-shell nanostructure for the characterization of the Ph-Hyd sensor. The performance of the Ph-Hyd sensor is evaluated in terms of sensitivity. It is found that the Ag/Al@ZnO nanostructure core-shell-coated SPR probe with f = 0.25 and d = 0.040 μm possesses the maximum sensitivity towards Ph-Hyd. These results are in agreement with the simulated ones obtained using electric field intensity. In addition, the performance of the proposed probe is compared with that of probes coated with (i) Al@ZnO nanocomposite, (ii) Al nanoparticles and (iii) ZnO nanoparticles. It is found that the probe coated with an Al@ZnO core-shell nanostructure shows the largest resonance wavelength shift. The detailed mechanism of the sensing (involving chemical reactions) is presented. The sensor also manifests optimum performance at pH 7.

摘要

我们报告了一种基于表面等离子体共振(SPR)的光纤传感器的制备与表征,该传感器使用银和铝(Al)-氧化锌(ZnO)核壳纳米结构(Al@ZnO)涂层来检测苯肼(Ph-Hyd)。为了优化ZnO中Al的体积分数(f)和核壳纳米结构层的厚度(d),使用二维多层矩阵法模拟了沿多层系统法线方向的电场强度。采用激光烧蚀技术制备了Al@ZnO核壳纳米结构。制备了具有不同f值和优化核壳纳米结构厚度的各种探针,用于表征Ph-Hyd传感器。从灵敏度方面评估了Ph-Hyd传感器的性能。发现f = 0.25且d = 0.040μm的Ag/Al@ZnO纳米结构核壳涂层SPR探针对Ph-Hyd具有最大灵敏度。这些结果与使用电场强度获得的模拟结果一致。此外,将所提出的探针的性能与涂覆有(i)Al@ZnO纳米复合材料、(ii)Al纳米颗粒和(iii)ZnO纳米颗粒的探针的性能进行了比较。发现涂覆有Al@ZnO核壳纳米结构的探针表现出最大的共振波长位移。给出了传感的详细机制(涉及化学反应)。该传感器在pH 7时也表现出最佳性能。

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