纳米流体在直流发散场下的行为

A. Cavallini, F. Negri
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引用次数: 5

摘要

最近对纳米流体直流稳定性的研究揭示了一些关于极化电流的有趣现象;在电压达到一个精确值后,出现了一些意想不到的缓慢峰值。在这项工作中,我们深入分析了可能导致这种实验结果的机制。在低浓度的纳米流体中,电荷捕获机制似乎占主导地位,而在高浓度的纳米流体中,纳米颗粒之间距离的减小和两个连续纳米颗粒之间较低的能垒能够激活它们之间的隧道电荷转移,从而增加它们的表观迁移率。
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Behavior of nanofluids under DC divergent fields
A recent investigation on the DC stability of nanofluids has revealed some interesting phenomena regarding the polarization current; some unexpected slow peaks appeared after the voltage reached a precise value. In this work we have deepened and analyzed the possible mechanisms which could cause such experimental results. While in low concentration nanofluids a charge trapping mechanism seems to be the prevailing one, at higher concentration, the reduced nanoparticles distances and the lower energy barrier between two consecutive nanoparticles is able to activate the tunneling charge transfer among them, thus increasing their apparent mobility.
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