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首页> 外文期刊>Nanoscale >One-step sonoelectrochemical fabrication of gold nanoparticle/carbon nanosheet hybrids for efficient surface-enhanced Raman scattering
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One-step sonoelectrochemical fabrication of gold nanoparticle/carbon nanosheet hybrids for efficient surface-enhanced Raman scattering

机译:一步sonoelectrochemical制造黄金纳米粒子/碳nanosheet混合动力车高效的表面增强喇曼散射

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摘要

A simple, fast, reproducible and efficient one-step fabrication method was successfully developed to prepare gold nanoparticle/carbon nanosheet (Au NP/CNS) hybrids by using sonoelectrochemistry. This method involved simultaneous generation of carbon nanosheets (CNSs) by oxidation of a graphite anode and generation of Au NPs by reduction of AuCl4- on the surface of the cathode. Then the Au NPs modified with poly(diallyl dimethyl ammonium chloride) were self-assembled on the surface of the CNS. A homemade sonoelectrochemical device that provided both high-intensity electric and ultrasonic fields was applied. The ability to obtain Au NPs with a controlled size and distribution on the surface of the CNS benefitted from the synergistic effect of the electric field and ultrasonic field. The Au NPs on the CNS surface exhibited distinctive and high-quality SERS activity. The enhancement factor of the developed substrate was 1.2 x 10(6) using 4-aminothiophenol as the probe molecule. The Au NP/CNS hybrid showed a great increase of Raman signals for aromatic molecules because of the high affinity of the CNS for aromatic molecules and the SERS activity of Au NPs. This SERS substrate also showed charge selectivity for cationic aromatic dyes, due to the negative charge on the surface of the CNS. Subsequently, the potential practical application of the SERS substrate was evaluated by quantitative analysis of adenine. The results suggest that Au NP/CNS materials as sensitive SERS-active substrates have great potential for detection of biomolecules.
机译:一个简单、快速、重现性好,办事效率高一步法制造方法是成功的准备开发黄金纳米粒子/碳nanosheet (Au NP / CNS)混合使用超声电化学。同时碳nanosheets的一代(CNSs)氧化石墨阳极和一代的非盟NPs AuCl4——的减少阴极的表面。修改与聚己二烯二甲基铵氯)表面的自组装中枢神经系统。提供了高强度电场和超声领域应用。获得非盟NPs与大小和控制分布在中枢神经系统受益协同效应的电场和超声场。表面表现出独特的和高质量的ser的活动。发达的衬底是1.2 x 10(6)使用巯基苯胺作为探针分子。NP / CNS混合显示拉曼的增加信号的芳香分子,因为高亲和力的芳香分子的中枢神经系统和非盟NPs的ser活动。衬底也表现出选择性收费阳离子染料芳香,由于负面的中枢神经系统表面。ser的潜在的实际应用衬底被定量分析评价腺嘌呤。SERS-active基质材料敏感对发现有巨大的潜力吗生物分子。

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