首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Synthesis of aqueous Au core-Ag shell nanoparticles using tyrosine as a pH-dependent reducing agent and assembling phase-transferred silver nanoparticles at the air-water interface
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Synthesis of aqueous Au core-Ag shell nanoparticles using tyrosine as a pH-dependent reducing agent and assembling phase-transferred silver nanoparticles at the air-water interface

机译:使用酪氨酸作为pH依赖性还原剂并在气-水界面处组装相转移的银纳米粒子,合成金核-银壳水性金纳米粒子

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摘要

We demonstrate that the amino acid tyrosine is an excellent reducing agent under alkaline conditions and may be used to reduce Ag+ ions to synthesize stable silver nanoparticles in water. The tyrosine-reduced silver nanoparticles may be separated out as a powder that is readily redispersible in water. The silver ion reduction at high pH occurs due to ionization of the phenolic group in tyrosine that is then capable of reducing Ag+ ions and is in turn converted to a semi-quinone structure. These silver nanoparticles can easily be transferred to chloroform containing the cationic surfactant octadecylamine by an electrostatic complexation process. The now hydrophobic silver nanoparticles may be spread on the surface of water and assembled into highly ordered, linear superstructures that could be transferred as multilayers onto suitable supports by the versatile Langmuir-Blodgett technique. Further, tyrosine molecules bound to the surface of Au nanoparticles through amine groups in the amino acid may be used to selectively reduce silver ions at high pH on the surface of the An nanoparticles, thus leading to a simple strategy for realizing phase-pure An core-Ag shell nanostructures.
机译:我们证明了氨基酸酪氨酸在碱性条件下是一种极好的还原剂,可用于还原Ag +离子以在水中合成稳定的银纳米颗粒。可以将酪氨酸还原的银纳米颗粒分离为易于在水中再分散的粉末。高pH下的银离子还原是由于酪氨酸中的酚基离子化而发生的,然后该酪氨酸能够还原Ag +离子,进而转化为半醌结构。这些银纳米颗粒可以通过静电络合工艺容易地转移到含有阳离子表面活性剂十八烷基胺的氯仿中。现在的疏水性银纳米颗粒可以散布在水表面,并组装成高度有序的线性超结构,可以通过通用的Langmuir-Blodgett技术将其作为多层形式转移到合适的载体上。此外,通过氨基酸中的胺基团结合到Au纳米颗粒表面的酪氨酸分子可用于在高pH下选择性地还原An纳米颗粒表面上的银离子,从而导致实现相纯An核的简单策略。 -银壳纳米结构。

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