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osphonate-stabilized silver nanoparticles: one-step synthesis and monolayer assembly

机译:膦酸酯稳定的银纳米颗粒:一步合成和单层组装

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The first case of phosphonic acid terminated,environmentally friendly silver nanoparticles (NPs) is described. The NPs are produced by a simple one-step synthesis using commercially available reagents, furnishing stable, rather monodisperse, size-controlled, aqueous-based Ag NPs, stabilized by aminomethylene phosphonic acid (AMP) molecules. In this synthesis the commercial reagent ethylenediamine tetra(methylene phosphonic acid) (EDTMP) serves as a reducing agent for Ag~+ ions, while its oxidation product AMP is the stabilizer of the generated Ag NPs. The negatively charged, phosphonate-stabilized NPs were characterized by UV-vis spectroscopy, transmission electron microscopy (TEM), and X-ray photoelectron spectroscopy (XPS). Variation of the EDTMP/AgNO3 molar ratio enables simple and efficient control of the average particle diameter in the range ~5.5 to 15 nm. The AMP-stabilized Ag NPs are stable in water under an inert atmosphere for at least 2 months with no observed aggregation. Self-assembled layers of phosphonate-coated Ag NPs were prepared on substrates primed with positively charged molecular self-assembled monolayers (SAMs) or with polyelectrolyte (PE) layers. The NP films were studied by UV-vis spectroscopy, polarization modulation Fourier-transform infrared reflection-absorption spectroscopy (PM-IRRAS), and high-resolution scanning electron microscopy (HRSEM). While NP monolayers commonly undergo extensive aggregation upon drying, the present phosphonate-stabilized Ag NP monolayers display homogeneously dispersed, mostly isolated NPs over large areas after adsorption and drying. The MP distribution and degree of aggregation can be modulated by the substrate type (gold, glass), the colloid solution pH, the nature of the primer layer (charged molecules, PEs), and the surface charge density. Phosphonate-terminated Ag NPs provide unique physical and chemical properties, including a negatively charged surface in a wide pH range, long-term stability, size control, and the possibility of participating in electrostatic and coordination binding processes.
机译:描述了膦酸封端的第一种情况,即环境友好的银纳米颗粒(NPs)。通过使用市售试剂通过简单的一步合成即可生产出NP,从而提供稳定的,单分散的,尺寸受控的水基Ag NP,并通过氨基亚甲基膦酸(AMP)分子进行稳定。在该合成中,商业试剂乙二胺四(亚甲基膦酸)(EDTMP)用作Ag +离子的还原剂,而其氧化产物AMP是生成的Ag NP的稳定剂。带负电荷的膦酸酯稳定的NPs通过紫外可见光谱,透射电子显微镜(TEM)和X射线光电子能谱(XPS)进行了表征。 EDTMP / AgNO3摩尔比的变化使得可以简单有效地将平均粒径控制在约5.5至15 nm的范围内。 AMP稳定的Ag NP在惰性气氛下在水中稳定至少2个月,没有观察到聚集现象。在用带正电的分子自组装单分子层(SAMs)或聚电解质(PE)层涂底漆的基材上制备涂有膦酸酯的Ag NPs的自组装层。通过紫外可见光谱,偏振调制傅里叶变换红外反射吸收光谱(PM-IRRAS)和高分辨率扫描电子显微镜(HRSEM)研究了NP薄膜。尽管NP单层通常在干燥时经历广泛的聚集,但是本发明的膦酸酯稳定的Ag NP单层在吸附和干燥后在大面积上显示出均匀分散的,大部分是分离的NP。 MP分布和聚集程度可以通过底物类型(金,玻璃),胶体溶液pH值,底漆层的性质(带电分子,PE)和表面电荷密度来调节。膦酸酯封端的银纳米颗粒具有独特的物理和化学性质,包括在宽pH范围内带负电荷的表面,长期稳定性,尺寸控制以及参与静电和配位结合过程的可能性。

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