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DESIGN AND FABRICATION OF DIFFERENTIAL SCANNING NANOCALORIMETER FOR BIOLOGICAL APPLICATIONS

机译:生物应用差示扫描量热仪的设计与制备

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摘要

This paper describes the design, fabrication, and characterization of a differential scanning nanocalorimeter that has potential to significantly reduce the sample volume to microliter and improve the temperature sensitivity to 10 uK. The nanocalorimeter consists of a polymeric freestanding membrane, four high-sensitive low-noise thermistors based on the silicon carbide (SiC), and a platinum heater and temperature sensor. With the integrated heater and sensors, temperature scanning and power compensation can be achieved for calorimetric measurement. Temperature sensing SiC film was prepared by using sintered SiC target and DC magnetron sputtering under different gas pressure and sputtering power. The SiC sensing material is characterized through the measurement of current-voltage curves and noise levels. Thermal performance of a fabricated nanocalorimeter is studied in simulation and experiment. The results indicate the device has a nano watt thermal power sensitivity, 10 μK temperature sensitivity, and long time constant to hold thermal energy, which leads to low-volume ultra sensitive nanocalorimetry for biological process, such as protein folding and ligand binding.
机译:本文介绍了一种差动扫描纳米量热仪的设计,制造和表征,它有潜力将样品量显着减少至微升,并将温度灵敏度提高到10 uK。纳米量热仪由一个聚合物独立式膜,四个基于碳化硅(SiC)的高灵敏度低噪声热敏电阻以及一个铂加热器和温度传感器组成。使用集成的加热器和传感器,可以实现热量测量的温度扫描和功率补偿。在不同的气压和溅射功率下,采用烧结的SiC靶材和直流磁控溅射法制备了感温SiC膜。通过测量电流-电压曲线和噪声水平来表征SiC感测材料。在模拟和实验中研究了制造的纳米量热仪的热性能。结果表明该器件具有纳瓦级的热功率灵敏度,10μK的温度灵敏度以及长时间保持热能的常数,这导致了用于生物过程(例如蛋白质折叠和配体结合)的小容量超灵敏纳米量热法。

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