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The seeded-synthesis of core-shell Au dumbbells with inbuilt Raman molecules and their SERS performance

机译:具有内置拉曼分子的核心壳Au哑铃的种子合成及其SERS性能

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Core-shell Au dumbbells with inbuilt Raman molecules were synthesized by a seeded reduction method using core-shell Au nanorod (NR)@ PSPAA nanoparticles as the seed. Most of the NRs finally maintained two secondary growth caps on the ends, showing a dumbbell-like shape. The lengths of the NRs were from 350 to 450 nm and the diameters of the caps were about 95 +/- 20 nm. Due to the existence of "hot spots" around their caps, where the inbuilt Raman molecule 2-naphthalenethiol (2NT) also presents, the Au dumbbells exhibited significant SERS activity with an enhancement ratio of about 2, compared with AuNR@ PSPAA. The Au dumbbells also showed excellent stability with a decrease ratio of 34.6% for SERS intensity after one month attributed to the encapsulation of 2NT by the PSPAA shell. The relative standard deviations of SERS peaks at 1066, 1382, and 1624 cm (-1) were 5.64%, 6.05%, and 6.80%, which indicates good homogeneity of the Au dumbbells. Therefore, such Au dumbbells may have great practical applications in reproducible quantitative SERS-based detection of chemical and biological pollutants.
机译:具有内置拉曼分子的核 - 壳体Au哑铃通过使用核心 - 壳Au nanorod(NR)纳米粒子作为种子的PSPAA纳米颗粒合成。大多数NRS最终在末端保持两个二级生长帽,显示哑铃状形状。 NRS的长度为350至450nm,盖子的直径约为95 +/-20nm。由于其盖子周围的“热点”存在,其中内置拉曼分子2-萘硫醇(2NT)也存在,与AUNR @ PSPAA相比,Au哑铃表现出具有约2的增强比率的显着菌率活性。 Au哑铃还表现出优异的稳定性,在一个月归因于PSPAA壳体2NT的封装后的汞强度的降低比率为34.6%。 SERS峰值在1066,1382和1624cm(-1)下的相对标准偏差为5.64%,6.05%和6.80%,表明Au哑铃的良好均匀性。因此,这种Au哑铃可能具有很大的实际应用,可在基于化学和生物污染物的基于化学和生物污染物的基础上的可再现定量阶段。

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  • 来源
    《Analytical methods》 |2017年第30期|共6页
  • 作者单位

    Ningbo Univ Fac Sci Dept Microelect Sci &

    Engn Inst Photon Ningbo 315211 Zhejiang Peoples R China;

    Ningbo Univ Fac Sci Dept Microelect Sci &

    Engn Inst Photon Ningbo 315211 Zhejiang Peoples R China;

    Ningbo Univ Technol Inst Phys Ningbo 315016 Zhejiang Peoples R China;

    Ningbo Univ Fac Sci Dept Microelect Sci &

    Engn Inst Photon Ningbo 315211 Zhejiang Peoples R China;

    Ningbo Univ Fac Sci Dept Microelect Sci &

    Engn Inst Photon Ningbo 315211 Zhejiang Peoples R China;

    Ningbo Univ Fac Sci Dept Microelect Sci &

    Engn Inst Photon Ningbo 315211 Zhejiang Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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