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Improved synthesis of concave cubic gold nanoparticles and their applications for Raman analysis of surfaces

机译:改进的凹立方金纳米颗粒的合成及其在表面拉曼分析中的应用

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In this contribution, we present a modification of the procedure for producing concave cubic gold (cc-Au) nanoparticles; this modification significantly increases the homogeneity of the product obtained. The synthesis of cc-Au is carried out by the slow growth of seed nanostructures in a solution containing chloroauric acid, silver nitrate, ascorbic acid and hexadecyltrimethylammonium chloride. We show that, when nanoparticles synthesized in a solution containing both chloroauric acid and copper chloride (with the molar ratio equal to ca. 10?:?1) are used as seeds (instead of seeds formed without the addition of copper), one can observe a significant increase in the homogeneity of the cc-Au nanostructures formed. The resulting cc-Au, and cc-Au@Ag nanoparticles (cc-Au covered by a nanometric layer of silver) as well, have been used as plasmonic cores in nanoresonators dedicated for shell-isolated nanoparticle-enhanced Raman spectroscopy (SHINERS). To our knowledge, the SHINERS nanoresonators produced in this work display a homogeneity that is significantly better than that of any anisotropic SHINERS nanostructures previously synthesized without the subsequent complex process of purifying the nanoparticles. Concave cubic nanoparticles were about 5 times more efficient as electromagnetic nanoresonators than spherical nanostructures of a similar size formed from the same material.
机译:在这项贡献中,我们提出了一种制备凹形立方金(cc-Au)纳米颗粒的方法的改进方法。这种修饰显着提高了所得产物的均一性。 cc-Au的合成是通过在含有氯金酸,硝酸银,抗坏血酸和十六烷基三甲基氯化铵的溶液中缓慢生长种子纳米结构来进行的。我们表明,当在包含氯金酸和氯化铜(摩尔比等于约10?:?1)的溶液中合成的纳米粒子用作种子(而不是不添加铜而形成的种子)时,观察到形成的cc-Au纳米结构的均匀性显着提高。所得的cc-Au和cc-Au @ Ag纳米颗粒(由银纳米层覆盖的cc-Au)也已用作专用于壳层分离的纳米颗粒增强拉曼光谱仪(SHINERS)的纳米谐振器中的等离子体核心。据我们所知,在这项工作中生产的SHINERS纳米谐振器显示出均质性,该均质性明显优于以前合成的任何各向异性SHINERS纳米结构,而没有随后的纯化纳米颗粒的复杂过程。凹形立方纳米粒子作为电磁纳米谐振器的效率比由相同材料形成的类似尺寸的球形纳米结构的效率高约5倍。

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