首页> 外文会议>Symposium K on Functional Materials and Nanostructures for Chemical and Biochemical Sensing >Synthesis of Size and Shape Controlled Silver Nanoparticles Coated by a Thin Layer of Gold and Their Use as Ultrasensitive Biomolecular Probes
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Synthesis of Size and Shape Controlled Silver Nanoparticles Coated by a Thin Layer of Gold and Their Use as Ultrasensitive Biomolecular Probes

机译:用薄金层涂覆的尺寸和形状控制银纳米颗粒的合成及其用作超敏感生物分子探针

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Silver nanoparticles coated by a layer of gold (Ag@Au) have received much attention because of their potential application as ultra sensitive probes for the detection of biologically important molecules such as DNA, proteins, amino acids and many others. However, the ability to control the size, shape, and monodispersity of the Ag@Au structure has met with limited success. In our own research we have addressed this challenge by creating an aqueous wet chemical synthesis technique towards size and shape controllable Ag@Au nanoparticles. These materials are highly interesting because of the tunable silver core size, and the tunable gold shell thickness, opening many avenues to the modification of the particle properties in terms of bio-molecular sensing. The resulting nanoparticle probes were functionalized with two complementary stranded DNA oligonucleotides. When combined, the complementary strands hybridized, causing the Ag@Au nanoparticles to assemble into large nano-structures. The presence of the oligonucleotide was confirmed through a series of techniques including UV-Vis and RAMAN spectroscopy, as well as HR-TEM, XPS, DLS, and many others. The results reflect the role that the nanoparticle physical properties play in the detection of the bio-molecules, as well as elucidate the characteristics of the bio-molecule/nanoparticle interaction.
机译:由金层(AG @ Au)的涂覆的银纳米颗粒已经收到,因为它们的潜在应用为用于检测诸如DNA,蛋白质,氨基酸和许多其他重要的生物分子的超灵敏探测器的关注。然而,要控制的大小,形状,和银@ Au结构的单分散性的能力已遇到了有限的成功。在我们自己的研究,我们通过建立对大小水的湿化学合成技术和形状可控的Ag @金纳米颗粒解决了这一难题。这些材料是非常有趣的,因为可调谐银核大小,以及可调谐金壳的厚度,在生物分子传感方面打开许多途径来颗粒性质的修饰。将得到的纳米粒子探针用两种互补的双链DNA寡核苷酸官能化。当组合时,互补链杂交,导致银@的Au纳米颗粒组装成较大的纳米结构。寡核苷酸的存在是通过一系列的技术,包括UV-Vis和拉曼光谱证实,以及HR-TEM,XPS,DLS,等等。结果反映了所述纳米颗粒的物理性质在检测生物分子的发挥的作用,以及阐明生物分子/纳米颗粒相互作用的特性。

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