Chenxing Li
Shanghai University of Engineering Sciences
5 Papers
Chenxing Li is an academic researcher from Shanghai University of Engineering Sciences. The author has contributed to research in topics: Chemistry & Graphene. The author has an hindex of 1, co-authored 1 publications.
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Papers
Flexible, biocompatible and highly conductive MXene-graphene oxide film for smart actuator and humidity sensor
TL;DR: In this article, a flexible, conductive, layer-structured homogenous Ti3C2TX MXene-graphene oxide (MGO) film-based moisture-driven actuator and humidity sensor were fabricated.
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Anti-biofouling Ti3C2TX MXene-holey graphene modified electrode for dopamine sensing in complex biological fluids.
TL;DR: In this paper , a sensor based on a glass carbon electrode (GCE) modified with Ti3C2TX MXene and electrochemically reduced holey graphene (ERHG) was fabricated and demonstrated to have excellent electrochemical performance and anti-biofouling properties.
26
Multi-responsive soft actuator with integrated ultrasensitive sensing performances for human motion detection and soft robots
Ling-Fei Li,Guangwen Jia,Wen-Chung Huang,Jiayi Zhou,Chenxing Li,Jingxuan Han,Yan Zhang,Xu Zhou +7 more
TL;DR: In this paper , a multi-responsive actuation composite film with integrated resistance sensing capabilities was developed for soft smart robotics, flexible wearable devices, and other integrated multifunctional systems.
19
A self-adhesive, self-healing and antibacterial hydrogel based on PVA/MXene-Ag/ sucrose for fast-response, high-sensitive and ultra-durable strain sensor
Chenxing Li,Ao Zheng,Jiayi Zhou,Wen-Chung Huang,Yan Zhang,Jingxuan Han,Lingyan Cao,Dongye Yang +7 more
TL;DR: In this article , the development of super-tough hydrogel-based sensors that combine self-healing and self-repairing sensors is discussed. But, the authors do not discuss the application of these sensors in soft robots, healthcare monitoring, and electronic skins.
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Hydrophilic antifouling 3D porous MXene/holey graphene nanocomposites for electrochemical determination of dopamine
TL;DR: In this paper , an antifouling electrochemical sensor for dopamine detection was fabricated by combining MXene and holey graphene (HG), which is a 2D material with excellent conductivity and hydrophilicity.