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在浓水性表面活性剂溶液中合成金纳米星的简单一步法。

A simple one-step procedure to synthesise gold nanostars in concentrated aqueous surfactant solutions.

作者信息

Liebig Ferenc, Henning Ricky, Sarhan Radwan M, Prietzel Claudia, Schmitt Clemens N Z, Bargheer Matias, Koetz Joachim

机构信息

University of Potsdam, Institute for Chemistry 14476 Potsdam Germany

Institute for Physics 14476 Potsdam Germany.

出版信息

RSC Adv. 2019 Jul 30;9(41):23633-23641. doi: 10.1039/c9ra02384d. eCollection 2019 Jul 29.

Abstract

Due to the enhanced electromagnetic field at the tips of metal nanoparticles, the spiked structure of gold nanostars (AuNSs) is promising for surface-enhanced Raman scattering (SERS). Therefore, the challenge is the synthesis of well designed particles with sharp tips. The influence of different surfactants, , dioctyl sodium sulfosuccinate (AOT), sodium dodecyl sulfate (SDS), and benzylhexadecyldimethylammonium chloride (BDAC), as well as the combination of surfactant mixtures on the formation of nanostars in the presence of Ag ions and ascorbic acid was investigated. By varying the amount of BDAC in mixed micelles the core/spike-shell morphology of the resulting AuNSs can be tuned from small cores to large ones with sharp and large spikes. The concomitant red-shift in the absorption toward the NIR region without losing the SERS enhancement enables their use for biological applications and for time-resolved spectroscopic studies of chemical reactions, which require a permanent supply with a fresh and homogeneous solution. HRTEM micrographs and energy-dispersive X-ray (EDX) experiments allow us to verify the mechanism of nanostar formation according to the silver underpotential deposition on the spike surface in combination with micelle adsorption.

摘要

由于金属纳米颗粒尖端的电磁场增强,金纳米星(AuNSs)的尖刺结构在表面增强拉曼散射(SERS)方面具有潜力。因此,挑战在于合成具有尖锐尖端的精心设计的颗粒。研究了不同表面活性剂,即磺基琥珀酸二辛酯钠(AOT)、十二烷基硫酸钠(SDS)和苄基十六烷基二甲基氯化铵(BDAC),以及表面活性剂混合物的组合在银离子和抗坏血酸存在下对纳米星形成的影响。通过改变混合胶束中BDAC的量,可以将所得AuNSs的核/尖刺壳形态从小核调整为具有尖锐和大尖刺的大核。在不损失SERS增强的情况下,吸收向近红外区域的伴随红移使其可用于生物应用以及化学反应的时间分辨光谱研究,这需要持续供应新鲜且均匀的溶液。高分辨率透射电子显微镜(HRTEM)图像和能量色散X射线(EDX)实验使我们能够根据尖刺表面上的银欠电位沉积与胶束吸附相结合来验证纳米星的形成机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0cd7/9069482/82bd8e5bee36/c9ra02384d-f1.jpg

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