材料科学
晶体管
灵敏度(控制系统)
拉伤
光电子学
压电
标度系数
应变计
侧向应变
纳米技术
声学
物理
制作
电子工程
电气工程
复合材料
电压
工程类
医学
替代医学
病理
内科学
作者
Rui Ge,Qiuhong Yu,Feng Zhou,Shuhai Liu,Yong Qin
标识
DOI:10.1038/s41467-023-41983-3
摘要
Abstract Mechanical sensors are mainly divided into two types (vertical force sensing and lateral strain sensing). Up to now, one sensor with two working modes is still a challenge. Here, we demonstrate a structural design concept combing a piezoelectric nano/microwire with a flexible polymer with protrusions that enables a dual-modal piezotronic transistor (DPT) with two working modes for highly sensitive vertical force sensing and lateral strain sensing. For vertical force sensing, DPT exhibits a force sensitivity up to 221.5 N −1 and a minimum identifiable force down to 21 mN, corresponding to a pressure sensitivity of 1.759 eV/MPa. For lateral strain sensing, DPT can respond to a large compression strain (~5.8%) with an on/off ratio up to 386.57 and a gauge factor up to 8988.6. It is a universal design that can integrate vertical force sensing and lateral strain sensing into only one nanodevice, providing a feasible strategy for multimodal devices.
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