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Tuning the number density of nanoparticles by multivariant tailoring of attachment points on flat substrates

机译:通过对平面基板上的附着点进行多变量调整来调整纳米粒子的数量密度

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We report on the organization of nanoparticles on a flat surface when there is strong yet tunable interaction between the particles and the surface. Specifically, we tailor the number density of citrate-stabilized gold nanoparticles on flat substrates by varying the concentration of the grafted amino groups on the surfaces and their degree of ionization. While the former effect is accomplished by decorating silica-based substrates with a molecular gradient of (3-aminopropyl)triefhoxysilane (APTES), the latter effect is achieved by varying the degree of ionization of the -NH_2 groups in APTES by varying the pH of the gold sol. We show that the measurement of particle number density on an APTES concentration gradient substrate at different pH values provides a simple, non-spectroscopic means to deduce the relative molecular concentration profile of APTES on the substrate.
机译:当颗粒与表面之间存在强烈但可调的相互作用时,我们报告了纳米颗粒在平坦表面上的组织。具体而言,我们通过改变表面上接枝氨基的浓度及其离子化程度,来调整平坦基材上柠檬酸盐稳定的金纳米颗粒的数量密度。前一种效果是通过用(3-氨基丙基)三乙氧基硅烷(APTES)的分子梯度修饰二氧化硅基基材来实现的,而后一种效果是通过改变APTES的pH值来改变APTES中-NH_2基团的电离度来实现的。金溶胶。我们表明,在不同pH值下APTES浓度梯度基质上的粒子数密度的测量提供了一种简单的非光谱方法,可推断出APTES在基质上的相对分子浓度分布。

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