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Published on: March 24, 2023
A Highly Sensitive and Wide-Range Capacitive Flexible Pressure Sensor Based on a Micropyramid Array and
Xiaowei Gong1, Boyu Fang1, Yuqiang Li1
1Institute of Smart City and Intelligent Transportation, Southwest Jiaotong University, Chengdu611756, China.
ACS Applied Materials & Interfaces
|August 13, 2026
Summary
This study introduces a novel flexible capacitive pressure sensor using micropyramid arrays and nanofibers. It achieves high sensitivity and a wide operational range, crucial for AI and soft robotics.
Area of Science:
- Materials Science
- Sensor Technology
- Robotics
Background:
- Flexible pressure sensors are vital for advanced AI and soft robotics.
- Existing sensors face a trade-off between sensitivity and operational range.
Purpose of the Study:
- To develop a capacitive pressure sensor with enhanced sensitivity and a broad operational range.
- To overcome the limitations of traditional pressure sensor designs.
Main Methods:
- Fabrication of a hybrid sensor structure combining micropyramid arrays and electrospun nanofibers.
- Characterization of the sensor's performance, including sensitivity, detection range, and limit of detection.
- Evaluation of durability, response time, and recovery time.
Main Results:
- Achieved a sensitivity of 3.31 kPa⁻¹ and a wide detection threshold up to 300 kPa.
- Demonstrated an excellent limit of detection (LOD) as low as 4.3 Pa.
- Exhibited remarkable durability (over 5000 cycles) and rapid response/recovery times (150/100 ms).
Conclusions:
- The proposed hybrid capacitive pressure sensor effectively overcomes the sensitivity-range trade-off.
- The sensor's high performance and durability support applications in IoT health monitoring and human-machine interfaces.
- This work offers a transformative approach for capacitive pressure sensors in intelligent systems.

