论文标题

由光伏光电镊子组装的组合纳米颗粒图案

Combinatorial nanoparticle patterns assembled by photovoltaic optoelectronic tweezers

论文作者

Sebastián-Vicente, Carlos, Remacha-Sanz, Pablo, Elizechea-López, Eva, García-Cabañes, Angel, Carrascosa, Mercedes

论文摘要

光伏光电镊(PVOT)已被证明是微型/纳米对象的操纵和大量组装的有效工具。该技术依赖于由于散装光伏效应而引起的某些铁电材料产生的强电场(通常是linbo3:fe)。尽管PVOT迅速发展以及高质量的1D和2D粒子模式的实现,但旨在由多种类型的颗粒组成的组合结构制造的研究工作很少。在这里,我们建立了三种不同方法的工作原则,以应对这一待处理挑战。为此,已适当利用了作用于中性和带电颗粒的介电性和/或电泳。已经成功获得了具有不同大小的金属和介电纳米颗粒的简单混合结构。结果为将来通过PVOT制造更复杂的组合结构的基础,其中微/纳米颗粒是小型功能设备的基本构建块。

Photovoltaic optoelectronic tweezers (PVOT) have been proven to be an efficient tool for the manipulation and massive assembly of micro/nano-objects. The technique relies on the strong electric fields produced by certain ferroelectric materials upon illumination due to the bulk photovoltaic effect (customarily LiNbO3:Fe). Despite the rapid development of PVOT and the achievement of high-quality 1D and 2D particle patterning, research efforts aimed at the fabrication of combinatorial structures made up of multiple types of particles have been scarce. Here, we have established the working principles of three different methods to tackle this pending challenge. To that end, dielectrophoresis and/or electrophoresis acting on neutral and charged particles respectively, have been suitably exploited. Simple mixed structures combining metallic and dielectric nanoparticles of different sizes have been successfully obtained. The results lay the groundwork for future fabrication of more complex combinatorial structures by PVOT, where micro/nanoparticles are the basic building blocks of miniaturized functional devices.

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