Jerzy Haber Institute of Catalysis and Surface Chemistry, Polish Academy of Sciences, ul. Niezapominajek 8, 30-239 Cracow, Poland.
J Colloid Interface Sci. 2011 Dec 1;364(1):39-48. doi: 10.1016/j.jcis.2011.07.059. Epub 2011 Aug 6.
A stable silver nanoparticle suspension was synthesized via the reduction of silver nitrate using sodium borohydride and sodium citrate. The particle's shape and size distribution were measured by various methods. The electrophoretic mobility measurements revealed that the zeta potential of particles was highly negative, increasing slightly with the ionic strength, from -52 mV for I=10(-5) M to -35 mV for I=3×10(-2) M (for pH=5.5). The zeta potential of mica modified by the adsorption of cationic polyelectrolytes: PEI and PAH was also determined using the streaming potential measurements. The modified mica sheets were used as substrates for particle monolayers formed via colloid self assembly. The kinetics of this process, proceeding under diffusion-controlled transport conditions, was quantitatively evaluated by a direct enumeration of particles using the AFM and SEM techniques. Both the kinetics of particle deposition and the maximum surface concentration were determined. From the slope of the initial deposition rates, the equivalent diameter of particles was determined to be 16 nm, in agreement with previous measurements. Based on this finding, an efficient method of determining particle size in suspension was proposed. It was also demonstrated that for higher ionic strengths, the maximum coverage of particle monolayers on PAH modified mica exceeded 0.39. The kinetic data were quantitatively interpreted in terms of the random sequential adsorption (RSA) model using the effective hard particle concept.
通过使用硼氢化钠和柠檬酸钠还原硝酸银,合成了稳定的银纳米颗粒悬浮液。通过各种方法测量了颗粒的形状和尺寸分布。电泳迁移率测量表明,颗粒的动电电势非常负,随着离子强度的略微增加而略有增加,从 I=10(-5) M 时的-52 mV 增加到 I=3×10(-2) M 时的-35 mV(对于 pH=5.5)。还使用流动电势测量法确定了通过吸附阳离子聚电解质:PEI 和 PAH 改性云母的动电电势。将改性云母片用作通过胶体自组装形成颗粒单层的基板。在扩散控制传输条件下进行的这个过程的动力学通过使用 AFM 和 SEM 技术直接计数颗粒进行定量评估。确定了颗粒沉积的动力学和最大表面浓度。根据初始沉积速率的斜率,确定颗粒的等效直径为 16nm,与之前的测量结果一致。基于这一发现,提出了一种确定悬浮液中颗粒尺寸的有效方法。还证明,对于更高的离子强度,PAH 改性云母上颗粒单层的最大覆盖率超过 0.39。使用有效硬球概念的随机顺序吸附(RSA)模型对动力学数据进行了定量解释。