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Fast Coagulation of Gold Sols. Rate Constants for Dimerization of Nanoparticles

机译:快速凝固金溶胶。纳米二聚体的速率常数

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By using the generalized Mie theory, the extinction cross sections for dimers of 46-nm gold particles immersed in water have been calculated. It has been found that, in the region of high-energy plasmon resonance band, the maximum value of normalized extinction cross section Qext1 gradually decreases as particles approach each other. The greatest changes in Qext1 are observed when interparticle distance h decreases from 10 to 3 nm. At shorter distances, Qext1 weakly depends on h. At the same time, the band position varies in a complicated manner; however, at h < 2.5 nm, it coincides with that for individual particles. The revealed properties of the high-energy plasmon resonance band for dimers have been used to determine the absolute rate constant for dimerization of 46-nm gold particles k(11). By spectrophotometry, we have investigated salt-induced coagulation of gold sols and have measured the rates of the decrease in optical density. Experimental and calculation data allowed us to establish, at initial stages of fast coagulation, when the distance between the surfaces of 46-nm gold particles is 1.3-2.0 nm (Dolinnyi, A. I., Colloid J., 2015, vol. 77, p. 600.), the average value of k(11) is (9.20 +/- 1.34) x 10(-12) cm(3)/s for sols with particle concentrations of (0.4-2.6) x 10(10) cm(-3).
机译:通过使用广义Mie理论,计算了浸入水中的46 nm金颗粒的二聚体的消光截面。已经发现,在高能等离子体共振带的区域中,归一化的消光截面Qext1的最大值随着粒子彼此接近而逐渐减小。当粒子间距h从10 nm减小到3 nm时,观察到Qext1的最大变化。在更短的距离处,Qext1弱依赖于h。同时,带的位置以复杂的方式变化。但是,在h <2.5 nm时,它与单个粒子的重合。用于二聚体的高能等离子体共振带的揭示性质已用于确定46 nm金粒子k(11)二聚化的绝对速率常数。通过分光光度法,我们研究了盐诱导的金溶胶的凝结,并测量了光密度下降的速率。实验和计算数据使我们能够在快速凝结的初始阶段确定46 nm金颗粒表面之间的距离为1.3-2.0 nm(Dolinnyi,AI,Colloid J.,2015,vol.77,p。 600.),对于颗粒浓度为(0.4-2.6)x 10(10)cm()的溶胶,k(11)的平均值为(9.20 +/- 1.34)x 10(-12)cm(3)/ s。 -3)。

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