Department of Physics, University of Illinois at Chicago , Chicago, Illinois 60607, United States.
Nano Lett. 2014 Dec 10;14(12):6816-22. doi: 10.1021/nl502450j. Epub 2014 Nov 24.
Experiments and computer simulations provide a new perspective that strong correlations of counterions with charged nanoparticles can influence the localization of nanoparticles at liquid-liquid interfaces and support the formation of voltage-tunable nanoparticle arrays. We show that ion condensation onto charged nanoparticles facilitates their transport from the aqueous-side of an interface between two immiscible electrolyte solutions to the organic-side, but contiguous to the interface. Counterion condensation onto the highly charged nanoparticles overcomes the electrostatic barrier presented by the low permittivity organic material, thus providing a mechanism to transport charged nanoparticles into organic phases with implications for the distribution of nanoparticles throughout the environment and within living organisms. After transport, the nanoparticles assemble into a two-dimensional (2D) nearly close-packed array on the organic side of the interface. Voltage-tunable counterion-mediated interactions between the nanoparticles are used to control the lattice spacing of the 2D array. Tunable nanoparticle arrays self-assembled at liquid interfaces are applicable to the development of electro-variable optical devices and active elements that control the physical and chemical properties of liquid interfaces on the nanoscale.
实验和计算机模拟提供了一个新的视角,即抗衡离子与带电纳米粒子的强相关性可以影响纳米粒子在液-液界面的定位,并支持形成电压可调的纳米粒子阵列。我们表明,离子在带电纳米粒子上的凝聚有助于它们从两种不可混溶电解质溶液之间的界面的水相转移到有机相,但与界面相邻。抗衡离子在带高电荷的纳米粒子上的凝聚克服了低介电常数有机材料呈现的静电障碍,从而提供了一种将带电纳米粒子输送到有机相中的机制,这对纳米粒子在环境中的分布以及在活生物体中的分布都有影响。在运输之后,纳米粒子在界面的有机侧组装成二维(2D)近乎密排的阵列。纳米粒子之间的可调谐抗衡离子介导的相互作用用于控制 2D 阵列的晶格间距。在液体界面处自组装的可调谐纳米粒子阵列适用于电变光学器件和主动元件的开发,这些元件控制液体界面在纳米尺度上的物理和化学性质。