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On the Effect of Modified Carbohydrates on the Size and Shape of Gold and Silver Nanostructures

机译:改性碳水化合物对金银纳米结构尺寸和形状的影响

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摘要

Gold (Au) and silver (Ag) nanostructures have widespread utilization from biomedicine to materials science. Therefore, their synthesis with control of their morphology and surface chemistry have been among the hot topics over the last decades. Here, we introduce a new approach relying on sugar derivatives that work as reducing, stabilizing, and capping agents in the synthesis of Au and Ag nanostructures. These sugar derivatives are utilized alone and as mixture, resulting in spherical, spheroid, trigonal, polygonic, and star-like morphologies. The synthesis approach was further tested in the presence of acetate and dimethylamine as size- and shape-directing agents. With the use of transmission electron microscopy (TEM), selected area electron diffraction (SAED), x-ray diffraction (XRD), scanning electron microscopy (SEM), and ultraviolet-visible (UV-vis) absorption spectroscopy techniques, the particle size, shape, assembly, aggregation, and film formation characteristics were evaluated. NPs’ attributes were shown to be tunable by manipulating the sugar ligand selection and sugar ligand/metal-ion ratio. For instance, with an imine side group and changing the sugar moiety from cellobiose to lactose, the morphology of the Ag nanoparticles (NPs) transformed from well dispersed cubic to rough and aggregated. The introduction of acetate and dimethylamine further extended the growth pattern and morphological properties of these NPs. As examples, L5 AS, G5AS, and S5AS ligands formed spherical or sheet-like structures when used alone, which upon the use of these additives transformed into larger multicore and rough NPs, revealing their significant effect on the NP morphology. Selected samples were tested for their stability against protein corona formation and ionic strength, where a high chemical stability and resistance to protein coating were observed. The findings show a promising, benign approach for the synthesis of shape- and size-directed Au and Ag nanostructures, along with a selection of the chemistry of carbohydrate-derivatives that can open new windows for their applications.
机译:金(Au)和银(Ag)纳米结构具有从生物医学的普遍用途到材料科学。因此,在过去几十年中,它们对其形态和表面化学的控制进行了控制。在这里,我们介绍了一种依赖于糖衍生物的新方法,该糖衍生物在合成Au和Ag纳米结构的合成中降低,稳定和封顶剂。这些糖衍生物单独使用,作为混合物,导致球形,球状,三角形,多边形和星状形态。在乙酸盐和二甲胺的存在下进一步测试合成方法,作为尺寸和形状引导剂。通过使用透射电子显微镜(TEM),选择的区域电子衍射(SAED),X射线衍射(XRD),扫描电子显微镜(SEM)和紫外线可见(UV-VIS)吸收光谱技术,粒径评估,形状,组装,聚集和膜形成特性。显示NPS的属性通过操纵糖配体选择和糖配体/金属离子比来调节。例如,用亚胺侧组并将糖部分从纤维二糖改变为乳糖,从分散的立方体良好分散的立方体转化为粗糙和聚集的Ag纳米颗粒(NPS)的形态。乙酸盐和二甲胺的引入进一步延长了这些NP的生长模式和形态学性质。作为实施例,L5为,G5As和S5As配体,单独使用时形成球形或片状结构,这在使用这些添加剂转化为较大的多核和粗糙的NPS时,揭示了对NP形态的显着影响。测试所选样品的稳定性针对蛋白质电晕形成和离子强度,其中观察到高化学稳定性和对蛋白质涂层的抗性。该研究结果表明了一种有希望的良性方法,用于合成形状和尺寸定向的Au和Ag纳米结构,以及选择可以为其应用开辟新窗口的碳水化合物 - 衍生物的化学。

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