Surface-Temperature Control of Silicon Nanowires in Dry and Liquid Conditions

Shoichi Akiyama, Y. T. Cheng, J. Fattaccioli, N. Takama, Peter Löw, C. Bergaud, Beomjoon Kim
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引用次数: 4

Abstract

In this paper we present the results of surface temperature control of silicon nanowires by using fluorescent thermometry at the nanometer scale. Rhodamine B is one of the stable fluorescent molecules, which rely on the characteristic of temperature-dependent change in fluorescent intensity, and it was used for nano-scale surface temperature sensing interface. The resistive heating on Si nanowires was carried out with applying voltage potential of 6 ~ 12 V. Surface-temperature measurement was performed by converting the changes in fluorescent intensity with calibration curve of Rhodamine B. The temperature at the central line along nanowires increasing from 30 degrees to 35~70 degrees was observed.
干燥和液体条件下硅纳米线的表面温度控制
本文介绍了利用荧光测温技术在纳米尺度上控制硅纳米线表面温度的结果。罗丹明B是一种稳定的荧光分子,依赖于荧光强度随温度变化的特性,被用于纳米级表面感温界面。采用6 ~ 12 V的电压对硅纳米线进行电阻加热。通过将荧光强度变化与罗丹明b的校准曲线进行转换来测量表面温度,观察到沿纳米线中心线的温度从30度增加到35~70度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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