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使用热退火多层金纳米粒子薄膜进行局部表面等离子体共振传感和 MALDI 质谱联用分析。

Use of thermally annealed multilayer gold nanoparticle films in combination analysis of localized surface plasmon resonance sensing and MALDI mass spectrometry.

机构信息

Department of Chemistry and Materials Engineering, Faculty of Chemistry, Materials and Bioengineering, Kansai University, Suita-shi, Osaka, 564-8680, Japan.

出版信息

Analyst. 2011 Mar 21;136(6):1167-76. doi: 10.1039/c0an00826e. Epub 2011 Feb 1.

Abstract

A self-assembled film of gold nanoparticles (AuNPs) with a raspberry-like morphology was prepared on a glass plate by the layer-by-layer thermal annealing of multilayer films of AuNPs. It was possible to control the morphology of the obtained films of AuNPs by changing the annealing temperature, duration of annealing, and number of layers. On investigating the plasmonic properties of these films, we found that AuNP films with a raspberry-like morphology yielded the highest refractive index unit, which is a critical parameter in localized surface plasmon resonance (LSPR) sensing, as compared to other types of AuNP films. Self-assembled AuNP films with a raspberry-like morphology were subsequently functionalized with 11-mercaptoundecanoic acid (MUA) to enable the binding of lysozyme to the MUA-modified Au surface. The superior limit of detection for the LSPR sensing of lysozyme in a buffer solution was found to be in the picomolar range (∼10(-12) M). The high sensitivity observed in the region was attributed to the raspberry-like morphology, where the AuNPs were packed closely together, and the electromagnetic field confinement was most intense (i.e., at hot spots). The MUA-modified, self-assembled AuNP films with a raspberry-like morphology were finally used in the combination analysis of LSPR sensing and matrix-assisted laser desorption/ionization mass spectrometry (MALDI-MS) for the selective detection and identification of lysozyme in human serum.

摘要

金纳米粒子(AuNPs)的自组装薄膜具有树莓状形态,通过 AuNPs 多层膜的逐层热退火在玻璃片上制备。通过改变退火温度、退火时间和层数,可以控制所得 AuNP 薄膜的形态。在研究这些薄膜的等离子体特性时,我们发现与其他类型的 AuNP 薄膜相比,具有树莓状形态的 AuNP 薄膜具有最高的折射率单位,这是局域表面等离子体共振(LSPR)传感中的关键参数。随后,将具有树莓状形态的自组装 AuNP 薄膜用 11-巯基十一酸(MUA)功能化,以使溶菌酶与 MUA 修饰的 Au 表面结合。在缓冲溶液中,LSPR 感测溶菌酶的优越检测限发现处于皮摩尔范围(约 10^(-12) M)。在该区域观察到的高灵敏度归因于树莓状形态,其中 AuNP 紧密堆积,电磁场限制最强烈(即在热点处)。最后,将具有树莓状形态的 MUA 修饰的自组装 AuNP 薄膜用于 LSPR 传感和基质辅助激光解吸/电离质谱(MALDI-MS)的组合分析,用于人血清中溶菌酶的选择性检测和鉴定。

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