史尧光
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1. 热电能量采集技术(Thermoelectric Energy Harvesting)
(1)可穿戴式柔性热电能量采集器:面向收集体热实现可穿戴电子设备自供能的应用,研究可拉伸/柔性微型热电能量采集器的设计制造、性能标定、系统集成方法。
(2)放射性同位素发电机(RTG)用能量采集器:面向小型化放射性同位素发电机的应用,研究高热阻紧凑型热电能量采集器的设计制造、仿真优化和绝热密封方法。

2. 柔性力热传感器技术(Flexible Force and Temperature Sensors)
(1)柔性导电/介电复合材料:研究基于导电填料(碳纳米管、炭黑、石墨烯、PEDOT:PSS、液态金属等)与硅橡胶基材的柔性导电/介电复合材料制备方法,研究复合材料的微观导电/介电机理与性能调控方法。
(2)柔性触觉/应力/温度传感器:面向航天固体发动机、变构飞行器柔性蒙皮、机器人灵巧手、可穿戴健康监测等领域应用,研制高灵敏、宽量程、高可靠性的触觉/应力/温度传感器件与感知系统。

(1)第一&通讯代表作:
[1] Shi Y, Lü X, Li Z, Chu H, Yuan C, Bao W. Multidirectional Strain-Insensitive Stretchable Temperature Sensor for Active Thermal Protection Flexible Skin. IEEE Transactions on Instrumentation and Measurement. 2026, 75: 9500910.
[2] Meng X, Tang H, Lü X*, Shi Y*, Bao W. Tactile Electronic Skin with Curved Surface Compensation by In-Situ Curvature Self-Sensing. IEEE Transactions on Instrumentation and Measurement. 2024, 73: 1–9.
[3] Shi Y, Lü X, Xiang Q, Li J, Shao X, Bao W. Stretchable thermoelectric generator for wearable power source and temperature detection applications. Energy Conversion and Management. 2022, 253: 115167.
[4] Shi Y, Lü X, Wang W, Meng X, Zhao J, Wang P, Bai G. Multilayer Flexible Pressure Sensor With High Sensitivity Over Wide Linearity Detection Range (August 2021). IEEE Transactions on Instrumentation and Measurement. 2021, 70: 9511809.
[5] Shi Y, Wang Y, Mei D, Feng B, Chen Z. Design and Fabrication of Wearable Thermoelectric Generator Device for Heat Harvesting. IEEE Robotics and Automation Letters. 2018, 3(1): 373-378.
[6] Shi Y, Wang Y, Mei D, Chen Z. Numerical modeling of the performance of thermoelectric module with polydimethylsiloxane encapsulation. International Journal of Energy Research. 2018, 42(3): 1287-1297.
[7] Wang Y, Shi Y, Mei D, Chen Z. Wearable thermoelectric generator to harvest body heat for powering a miniaturized accelerometer. Applied Energy. 2018, 215: 690-698.(ESI高被引)
[8] Shi Y, Mei D, Yao Z, Wang Y, Liu H, Chen Z. Nominal power density analysis of thermoelectric pins with non-constant cross sections. Energy Conversion and Management. 2015, 97: 1-6.
(2)部分发明专利:
[1] 史尧光, 吕晓洲, 张维强, 姚斌. 可拉伸柔性热电器件及其制作方法, 专利号:ZL202110772041.2
[2] 史尧光, 吕晓洲, 张维强, 姚斌, 闫贝. 一种具有多维梯度模量的可拉伸柔性热电器件结构及制作方法, 申请号:CN202310591795.7
[3] 史尧光, 吕晓洲. 一种柔性蒙皮多向可拉伸温度传感器及制备方法, 申请号:CN202411202982.2
[4] 史尧光, 吕晓洲. 一种高灵敏低串扰的触觉电子皮肤及制备方法, 申请号:CN202511372224.X
[4] 吕晓洲, 史尧光. 基于全柔性大应变传感器的固体发动机药柱应变测量方法, 专利号:ZL201910435205.5
[5] 吕晓洲, 刘奕扬, 史尧光. 基于形状记忆合金丝的超轻薄柔性致动器, 申请号:CN202410303087.3
[6] 吕晓洲, 谢楷, 史尧光, 宋江文, 赵继豪. 基于分压法的微型压阻传感器阵列测量电路及其测量方法, 申请号:ZL202010506916.X