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用于差示热分析 (DTA) 的超高响应性 MEMS 传感芯片。

Ultra-Responsive MEMS Sensing Chip for Differential Thermal Analysis (DTA).

机构信息

State Key Laboratory of Transducer Technology, Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences, Shanghai 200050, China.

School of Microelectronics, University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Sensors (Basel). 2023 Jan 26;23(3):1362. doi: 10.3390/s23031362.

Abstract

Ultra-responsive single-crystal silicon MEMS thermopiles for differential thermal analysis (DTA) are developed. Facilitated by a unique "microholes interetch and sealing (MIS)" technique, pairs of suspended thermopiles are batch fabricated in a differential form, with high-density (54 pairs) n-type/p-type single-crystal silicon thermocouples integrated within each thermopile (sample area ~0.045 mm). The fabricated MEMS thermopile sensors exhibit outstanding power responsivity of 99.5 V/W and temperature responsivity of 27.8 mV/°C, which are more than 4 times higher than those reported for material thermal analysis. The high-responsivity MEMS DTA chips allow us to accurately measure the indium melting point at different heating rates of ~1-100 °C/s. We also perform DTA measurement of the dehydration process of CuSO·5HO and the crystals show three stages of losing water of crystallization before becoming anhydrous copper sulfate salt. Our high-performance, cost-effective MEMS sensing chips hold promise for rapid and accurate DTA characterization for a wide range of applications.

摘要

用于差示热分析(DTA)的超灵敏单晶硅 MEMS 热电偶堆得以开发。得益于独特的“微孔互刻蚀和密封(MIS)”技术,以差分形式批量制造了两对悬浮热电偶堆,每对热电偶堆内集成了高密度(54 对)n 型/p 型单晶硅热电偶(样品面积约 0.045mm²)。所制造的 MEMS 热电偶堆传感器表现出出色的功率响应度为 99.5V/W 和温度响应度为 27.8mV/°C,分别比材料热分析报道的高出 4 倍以上。高响应度的 MEMS DTA 芯片使我们能够以~1-100°C/s 的不同加热速率准确测量铟的熔点。我们还对 CuSO·5HO 的脱水过程进行了 DTA 测量,晶体显示出在成为无水硫酸铜盐之前经历三个结晶水失去的阶段。我们的高性能、高性价比的 MEMS 传感芯片有望在广泛的应用中实现快速、准确的 DTA 特性分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/89ff/9920126/510b8b48aa91/sensors-23-01362-g001.jpg

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