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Study of constrained Brownian motion of nanoparticles near an interface using optical tweezers

机译:光学镊子接口附近纳米粒子附近的约束褐色运动的研究

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We demonstrate a method to determine the Brownian motion and the diffusion coefficient of a nanoparticle in water in a plane that is parallel to a solid boundary and as function of the distance normal to that boundary by using an optical tweezers instrument. A solution of 190 nm-diameter fluorescent polystyrene nanoparticles in de-ionized (DI) water is introduced in a micro-chamber built from two thin glass substrates. A single particle is trapped by the tweezers and optically moved in the z-direction normal to a substrate. By analyzing a scatter plot of the time-dependent positions of the nanoparticle in the x-y plane in a histogram, the diffusion coefficient parallel to the substrate of the Brownian particle constrained by the substrate is determined as a function of the distance between the substrate and the nanoparticle. The experimental results indicate the increased drag effect on the nanoparticle when it is close to the substrate, as evidenced by an experimental diffusion coefficient nearby the substrate that is about half of that of the particle in the bulk fluid.
机译:我们证明了一种方法来确定与固体边界平行的平面中的平面中的褐色运动和纳米颗粒的扩散系数,并且通过使用光学镊子仪器作为正常垂直于该边界的距离的函数。在由两种薄玻璃基板构建的微室中引入了190nm直径荧光聚苯乙烯纳米粒子的溶液。单个颗粒被镊子捕获并在垂直于Z方向上光学移动到衬底。通过在直方图中分析XY平面中纳米颗粒的时间依赖性位置的散点图,并平行于由基板约束的褐色粒子的基板的扩散系数被确定为基板和距离之间的距离纳米粒子。实验结果表明当它靠近基板时,在纳米颗粒上增加对纳米颗粒的增加,如附近的基材上的实验扩散系数,其大约是颗粒中的颗粒中的颗粒中的一半。

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