首页> 外文会议>Proceedings of the 2010 5th IEEE International Conference on Nano/Micro Engineered and Molecular Systems >Dielectrophoretic assembly of 2 nm gold particles for nano-sensing applications
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Dielectrophoretic assembly of 2 nm gold particles for nano-sensing applications

机译:用于纳米传感应用的2 nm金粒子的介电泳组装

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This paper describes the assembly of 2 nm gold nanoparticles between micro-fabricated planar electrodes by using dielectrophoresis (DEP). The optimal conditions for effectively dieletrophoretic manipulation have been established through theoretical analysis and experimental validation. In the theoretical analysis, the effect of Brownian motion was taken into consideration, as well as the electrothermal flow and the AC electroosmosis flow. For effective manipulation of nanoparticles using DEP, proper high electric field strength is desired to give rise to dominate DEP effect, since the higher electric field strength increases the Joule heating and the lower strength reduces the DEP force. The current results indicate that the input voltage of 16Vp-p, 150 kHz leads to effective assembly of 2 nm gold nanoparticles. Our study proved that the DEP is capable of consistently assembling gold nanoparticles down to 2 nm in diameter with micro-fabricated electrodes, which was thought to be extremely difficult in the past.
机译:本文通过介电电泳(DEP)描述了在微细制造的平面电极之间2 nm金纳米颗粒的组装。通过理论分析和实验验证,确定了有效的介电泳操作的最佳条件。在理论分析中,考虑了布朗运动的影响,以及电热流和交流电渗流。为了使用DEP有效地操纵纳米颗粒,需要适当的高电场强度以产生主要的DEP效果,因为较高的电场强度会增加焦耳加热,而较低的强度会降低DEP力。当前结果表明,输入电压16Vp-p,150 kHz导致2 nm金纳米颗粒的有效组装。我们的研究证明,DEP能够用微型电极连续地组装直径小于2 nm的金纳米颗粒,这在过去被认为是极其困难的。

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