Suppr超能文献

分级组装的NiCo@SiO2@Ag磁性核壳微球作为高效且可回收的3D表面增强拉曼散射基底。

Hierarchically assembled NiCo@SiO2@Ag magnetic core-shell microspheres as highly efficient and recyclable 3D SERS substrates.

作者信息

Zhang Maofeng, Zhao Aiwu, Wang Dapeng, Sun Henghui

机构信息

Institute of Intelligent Machines, Chinese Academy of Sciences, Hefei, 230031, P. R. China.

出版信息

Analyst. 2015 Jan 21;140(2):440-8. doi: 10.1039/c4an01275e.

Abstract

The hierarchically nanosheet-assembled NiCo@SiO2@Ag (NSA) core-shell microspheres have been synthesized by a layer-by-layer procedure at ambient temperature. The mean particle size of NSA microspheres is about 1.7 μm, which is made up of some nanosheets with an average thickness of ∼20 nm. The outer silver shell surface structures can be controlled well by adjusting the concentration of Ag(+) ions and the reaction times. The obtained NSA 3D micro/nanostructures show a structure enhanced SERS performance, which can be attributed to the special nanoscale configuration with wedge-shaped surface architecture. We find that NSA microspheres with nanosheet-assembled shell structure exhibit the highest enhancement efficiency and high SERS sensitivity to p-ATP and MBA molecules. We show that the detection limits for both p-ATP and MBA of the optimized NSA microsphere substrates can approach 10(-7) M. And the relative standard deviation of the Raman peak maximum is ∼13%, which indicates good uniformity of the substrate. In addition, the magnetic NSA microspheres with high saturation magnetization show a quick magnetic response, good recoverability and recyclability. Therefore, such NSA microspheres may have great practical potential applications in rapid and reproducible trace detection of chemical, biological and environment pollutants with a simple portable Raman instrument.

摘要

通过在室温下逐层组装的方法合成了具有分层纳米片组装结构的NiCo@SiO2@Ag (NSA) 核壳微球。NSA微球的平均粒径约为1.7μm,由一些平均厚度约为20nm的纳米片组成。通过调节Ag(+)离子浓度和反应时间,可以很好地控制银壳的表面结构。所制备的NSA三维微/纳米结构表现出结构增强的表面增强拉曼散射(SERS)性能,这可归因于具有楔形表面结构的特殊纳米级构型。我们发现具有纳米片组装壳结构的NSA微球对p-ATP和MBA分子表现出最高的增强效率和高SERS灵敏度。我们表明,优化后的NSA微球基底对p-ATP和MBA的检测限均可接近10(-7) M。拉曼峰最大值的相对标准偏差约为13%,这表明基底具有良好的均匀性。此外,具有高饱和磁化强度的磁性NSA微球表现出快速的磁响应、良好的可回收性和循环利用性。因此,这种NSA微球在使用简单便携式拉曼仪器对化学、生物和环境污染物进行快速、可重复的痕量检测方面可能具有巨大的实际潜在应用价值。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验