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Unique gold sponges: biopolymer-assisted hydrothermal synthesis and potential application as surface-enhanced Raman scattering substrates

机译:独特的金海绵:生物聚合物辅助的水热合成和潜在应用作为表面增强拉曼散射基质

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摘要

In this paper we describe a biopolymer-assisted hydrothermal approach to the synthesis of gold sponges. This is carried out by transferring a hyaluronic acid potassium salt/HAuCl_4 aqueous solution into a stainless steel autoclave with a Teflon liner and heating in an oven at 180 deg C for 6 h. Here, hyaluronic acid potassium salt plays three roles in the synthesis, namely, stabilization, reduction, and as a soft template. Field emission scanning electron microscopy images, energy-dispersive x-ray spectroscopy, and x-ray diffraction reveal that the materials obtained consist of an interconnected framework of face-centred cubic metallic gold filaments, which is approximately 0.6 mu m in width and composed of fused micrometre-sized particles that enclose pores 1-4 mu m in size. The test of surface-enhanced Raman scattering (SERS) from 4-mercaptobenzoic acid shows that the prepared gold sponges are an active SERS substrate. This is largely because they had an increased number of particle junctions, which are SERS active sites. This route can also be extended to the fabrication of silver sponges, which are composed of fused crystallites with diameters of 200-400 nm that enclosed pores 0.4-2 mu m in size. The test of SERS from Rhodamine 6G also reveals that the prepared silver sponges are likewise an excellent SERS substrate.
机译:在本文中,我们描述了一种生物聚合物辅助的水热方法来合成金海绵。这是通过将透明质酸钾盐/ HAuCl_4水溶液转移到带有特氟龙衬里的不锈钢高压釜中,然后在180摄氏度的烤箱中加热6小时来进行的。在此,透明质酸钾盐在合成中起三个作用,即稳定化,还原和作为软模板。场发射扫描电子显微镜图像,能量色散X射线光谱和X射线衍射表明,所获得的材料由面心立方金属金丝的互连框架组成,该框架的宽度约为0.6微米,由熔合的微米级颗粒,围成1-4微米的孔。由4-巯基苯甲酸进行的表面增强拉曼散射(SERS)测试表明,所制备的金海绵是活性的SERS底物。这主要是因为它们具有数量更多的粒子结,它们是SERS活性位点。该途径也可以扩展到银海绵的制造,该银海绵由直径为200-400 nm的熔融微晶组成,并包围着0.4-2μm的孔隙。罗丹明6G对SERS的测试还表明,制备的银海绵同样是出色的SERS底物。

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