材料科学
压阻效应
MXenes公司
电子皮肤
纳米技术
触觉传感器
制作
热电效应
导电体
压力传感器
光电子学
可扩展性
基质(水族馆)
计算机科学
复合材料
机械工程
机器人
人工智能
医学
海洋学
替代医学
物理
病理
数据库
地质学
工程类
热力学
作者
Fu‐Lin Gao,Ji Liu,Xiaopeng Li,Ma Qian,Tingting Zhang,Zhong‐Zhen Yu,Jie Shang,Run‐Wei Li,Xiaofeng Li
出处
期刊:ACS Nano
[American Chemical Society]
日期:2023-08-14
卷期号:17 (16): 16036-16047
被引量:52
标识
DOI:10.1021/acsnano.3c04650
摘要
Although skin-like sensors that can simultaneously detect various physical stimuli are of fair importance in cutting-edge human-machine interaction, robotic, and healthcare applications, they still face challenges in facile, scalable, and cost-effective production using conventional active materials. The emerging two-dimensional transition metal carbide, Ti3C2Tx MXene, integrated with favorable thermoelectric properties, metallic-like conductivity, and a hydrophilic surface, is promising for solving these problems. Herein, skin-like multifunctional sensors are designed to precisely detect and distinguish temperature and pressure stimuli without cross-talk by decorating elastic and porous substrates with MXene sheets. Because the combination of the thermoelectric and conductive MXene with the thermally insulating, elastic, and porous substrate integrates efficient Seebeck and piezoresistive effects, the resultant sensor exhibits not only an ultralow detection limit (0.05 K), high signal-to-noise ratio, and excellent cycling stability for temperature detection but also high sensitivity, fast response time, and outstanding durability for pressure detection. Based on the impressive dual-mode sensing properties and independent temperature and pressure detections, a multimode input terminal and an electronic skin are created, exhibiting great potential in robotic and human-machine interaction applications. This work provides a scalable fabrication of multifunctional tactile sensors for precisely detecting and distinguishing temperature and pressure stimuli.
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