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首页> 外文期刊>Journal of Raman Spectroscopy: An International Journal for Original Work in All Aspects of Raman Spectroscopy, Including Higher Order Processes, and Also Brillouin- and Rayleigh Scattering >Cationic surfactant regulated synthesis of Au nanorods for sensitive detection of negatively charged colorants by surface-enhanced Raman spectroscopy
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Cationic surfactant regulated synthesis of Au nanorods for sensitive detection of negatively charged colorants by surface-enhanced Raman spectroscopy

机译:阳离子表面活性剂调节Au纳米棒的合成敏感性检测带负荷着色剂的表面增强拉曼光谱法

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摘要

Although surface-enhanced Raman spectroscopy (SERS) has recently emerged as a powerful analytical tool, its widespread use is hindered by several inherent problems (e.g., low reproducibility) that need to be solved before further progress is possible. Herein, we used dodecyltrimethylammonium bromide (DTAB), N-dodecyl-N-2-hydroxyethyl-N,N-dimethylammonium bromide (C(12)HDAB), and N-dodecyl-N,N-2-dihydroxyethyl-N-methylammonium bromide (C(12)DHAB) as templates for the seed-mediated growth of Au nanorods with different aspect ratios and probed the growth mechanism by a range of instrumental techniques. The prepared nanorods were used as substrates for SERS-based detection of three negatively charged colorants (lemon yellow, orange II, and amaranth) and exhibited extraordinary SERS sensitivity for all of these targets. The highest sensitivity was observed in the case of C(12)DHAB-capped nanorods, which was attributed to abundant hydrogen bonds between surfactants and targets and strong electrostatic adsorption of negatively charged colorants. Therefore, the above substrate was concluded to be well suited for real-life applications.
机译:虽然表面增强的拉曼光谱(SERS)最近被出现为强大的分析工具,但其广泛的用途受到在进一步进展之前需要解决的几个固有问题(例如,低再现性)。在此,我们使用十二烷基三甲基溴化铵(DTAB),N-十二烷基-N-2-羟乙基-N,N-二甲基溴(C(12)HDAB)和N-十二烷基-N,N-2-二羟基乙基-N-甲基铵溴化物(C(12)DHAB)作为种子介导的Au纳米棒的生长的模板,其具有不同纵横比并通过一系列仪器技术探测生长机制。制备的纳米棒被用作基于SERS的三种带负电荷着色剂(柠檬黄,橙色II和苋菜)的基底的基材,并对所有这些靶标表现出非凡的SERS敏感性。在C(12)DHAB封端的纳米棒的情况下观察到最高的敏感性,其归因于表面活性剂和靶标之间的丰富氢键,以及带负电荷着色剂的强静电吸附。因此,结论上述基板非常适合真实应用。

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