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A simple approach for the precise measurement of surface temperature distributions on the microscale under dry and liquid conditions based on thin Rhodamine B films

机译:一种基于罗丹明B薄膜的在干燥和液体条件下精确测量微米级表面温度分布的简单方法

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摘要

The precise measurement of surface temperatures on the microscale is of major importance for lab-on-a-chip applications that deal with temperature-dependent processes. For that, thermometric methods that combine high temperature resolution with feasibility, flexibility and applicability in aqueous environments are strongly required. Here, we present and characterize an easy approach for surface temperature measurements based on thin films of commercially available sol-gel that contain the temperature-sensitive fluorophore Rhodamine B. These films can be applied onto various surfaces in an easy two-step process and allow for temperature mapping on the microscale under both dry and liquid conditions. To demonstrate the potential of the approach we measured the temperature distribution at the surface of resistive microheaters. We analyzed minute surface temperature gradients and conducted time-dependent measurements. This demonstrated the high resolution regarding temperature (<1 ℃), space (lower µm-range in one dimension), and time (sub-seconds-range) that can be achieved with the described approach under dry as well as under liquid conditions. Good correlation of our experimental results to those from finite element-based simulations confirmed the reliability of the approach.
机译:在微尺度上精确测量表面温度对于处理依赖于温度的过程的芯片实验室应用至关重要。为此,强烈需要将高温分辨率与在水性环境中的可行性,灵活性和适用性相结合的测温方法。在这里,我们介绍并描述了一种基于表面温度测量的简便方法,该方法基于包含热敏荧光若丹明B的市售溶胶凝胶薄膜。这些薄膜可以通过简单的两步法施涂到各种表面上,并允许用于在干燥和液体条件下在微尺度上绘制温度图。为了证明这种方法的潜力,我们测量了电阻式微型加热器表面的温度分布。我们分析了微小的表面温度梯度并进行了时间依赖性的测量。这证明了在干燥和液体条件下,使用上述方法可以实现关于温度(<1℃),空间(一维的较低µm范围)和时间(亚秒级)的高分辨率。我们的实验结果与基于有限元模拟的实验结果之间的良好相关性证实了该方法的可靠性。

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