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首页> 外文期刊>Journal of Micromechanics and Microengineering >Micro-Raman thermometry for measuring the temperature distribution inside the microchannel of a polymerase chain reaction chip
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Micro-Raman thermometry for measuring the temperature distribution inside the microchannel of a polymerase chain reaction chip

机译:显微拉曼测温法,用于测量聚合酶链反应芯片微通道内部的温度分布

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摘要

The temperature distribution inside the microchannel was first measured using a micro-Raman spectroscopy system. Polymerase chain reaction (PCR) inside the microchannel, which is very sensitive to temperature change, was chosen to validate a novel thermometry. The micro PCR chip was fabricated by silicon micromachining. The microchip consisted of a microchannel inside the chip, a Pt film heater and a Pt film sensor on the silicon surface. The O-H stretch vibration mode of water was analyzed using a micro-Raman spectroscopy system. Its spectral changes were calibrated with temperature. The intensity ratio of the hydrogen-bonded (HB) to non-hydrogen-bonded (NHB) O-H stretch vibration modes has a linear relation with temperature. The temperature of the microchannel controlled at 55 degrees C varied from 53.6 to 54.8 degrees C depending on the location of the microchannel.
机译:首先使用微拉曼光谱系统测量微通道内部的温度分布。选择对温度变化非常敏感的微通道内部的聚合酶链反应(PCR)以验证新型测温方法。通过硅微加工来制造微PCR芯片。微芯片由芯片内部的微通道,硅表面上的Pt膜加热器和Pt膜传感器组成。使用显微拉曼光谱系统分析了水的O-H拉伸振动模式。其光谱变化随温度校准。氢键(HB)与非氢键(NHB)O-H拉伸振动模式的强度比与温度呈线性关系。根据微通道的位置,控制在55摄氏度的微通道温度从53.6到54.8摄氏度不等。

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