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功能性金纳米粒子在比色和 SERS 基多模态痕量检测 Ni(II)离子中纳米颗粒尺寸的重要性。

Importance of nanoparticle size in colorimetric and SERS-based multimodal trace detection of Ni(II) ions with functional gold nanoparticles.

机构信息

Centre for Molecular Nanometrology, WestCHEM, Pure and Applied Chemistry, University of Strathclyde, 295 Cathedral Street, Glasgow, G1 1XL, UK.

出版信息

Small. 2012 Mar 12;8(5):707-14. doi: 10.1002/smll.201101980. Epub 2012 Jan 5.

Abstract

Colorimetric detection of analytes using gold nanoparticles along with surface-enhanced Raman spectroscopy (SERS) are areas of intense research activity since they both offer sensing of very low concentrations of target species. Multimodal detection promotes the simultaneous detection of a sample by a combination of different techniques; consequently, surface chemistry design in the development of multimodal nanosensors is important for rapid and sensitive evaluation of the analytes by diverse analytical methods. Herein it is shown that nanoparticle size plays an important role in the design of functional nanoparticles for colorimetric and SERS-based sensing applications, allowing controlled nanoparticle assembly and tunable sensor response. The design and preparation of robust nanoparticle systems and their assembly is reported for trace detection of Ni(II) ions as a model system in an aqueous solution. The combination of covalently attached nitrilotriacetic acid moieties along with the L-carnosine dipeptide on the nanoparticle surface represents a highly sensitive platform for rapid and selective detection of Ni(II) ions. This systematic study demonstrates that significantly lower detection limits can be achieved by finely tuning the assembly of gold nanoparticles of different core sizes. The results clearly demonstrate the feasibility and usefulness of a multimodal approach.

摘要

使用金纳米粒子与表面增强拉曼光谱 (SERS) 进行显色检测是当前研究的热点领域,因为它们都可以检测到目标物种的极低浓度。多模态检测通过多种技术的组合来促进对样品的同时检测;因此,在开发多模态纳米传感器时,表面化学设计对于通过不同分析方法快速、灵敏地评估分析物非常重要。本文表明,纳米粒子尺寸在设计用于比色和基于 SERS 的传感应用的功能性纳米粒子中起着重要作用,允许控制纳米粒子的组装和可调谐的传感器响应。本文报道了一种稳健的纳米粒子系统的设计和制备,并将其用于痕量 Ni(II)离子的检测,这是一种在水溶液中的模型体系。通过在纳米粒子表面共价连接的氮三乙酸部分与 L-肌肽二肽的结合,代表了一种快速和选择性检测 Ni(II)离子的高灵敏度平台。这项系统研究表明,通过精细调整不同核心尺寸的金纳米粒子的组装,可以实现更低的检测限。结果清楚地表明了多模态方法的可行性和实用性。

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