Chunlei Chang

ORCID: 0000-0002-5326-876X
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About
Contact & Profiles
Research Areas
  • Advanced Sensor and Energy Harvesting Materials
  • Conducting polymers and applications
  • Nanomaterials and Printing Technologies
  • Gas Sensing Nanomaterials and Sensors
  • Advanced Materials and Mechanics
  • Tactile and Sensory Interactions
  • Blockchain Technology Applications and Security
  • IoT and Edge/Fog Computing
  • ZnO doping and properties
  • Network Security and Intrusion Detection
  • Dielectric materials and actuators
  • Cloud Computing and Resource Management
  • Muscle activation and electromyography studies

Tianjin University
2021-2023

Inner Mongolia Electric Power (China)
2022

Xinjiang Entry-Exit Inspection and Quarantine Bureau
2021

The fast degradation of copper in ambient conditions hinders the practical application nanowires (Cu NWs) flexible electronics. Here, we describe a simple yet effective solution method for growing NiO shells on surface Cu NWs, which enables protection NW network against oxidation without degrading optical and electrical properties. corresponding values (for example, before coating: 13.6 Ω/sq at 84.4%, after 14.9 84.8%) show that deposition shell preservation high transparency conductivity...

10.1021/acsanm.3c01329 article EN ACS Applied Nano Materials 2023-06-12

Abstract Soft actuators with high flexibility have received widespread attention. Here, a transparent electrothermal soft actuator is designed and manufactured via sandwiched copper nanowires (Cu NWs) between two kinds of flexible substrates different thermal expansion characteristics (polyethylene‐terephthalate (PET) low‐density polyethylene (LDPE)). In order to improve bending the actuator, heating performance heaters widths studied, strain gauges under voltages are also studied. The...

10.1002/mame.202100638 article EN Macromolecular Materials and Engineering 2021-12-07

In recent years, the rapid development of intelligent robots has placed higher demands on robotic hands that can dexterously manipulate objects. Among them, sensors measure and differentiate friction in real time have attracted great attention. Here, inspired by fingerprint morphology, a wearable capacitive force sensor is proposed based laser etching process. The composed polydimethylsiloxane (PDMS) elastomer as dielectric strain layer conductive silica gel electrode. Both layers electrodes...

10.1021/acsaelm.2c00463 article EN ACS Applied Electronic Materials 2022-07-26

To resolve some problems of traditional cloud computing such as resource bottleneck, edge is proposed, which very useful in the field power Internet Things. Because equipment unevenly distributed geographically and demand for storage different, load rate on different nodes has great difference. The development container technology solves problem imbalanced. features lightweight portability, containers can realize dynamic task assignment according to node rate, then balance nodes. Therefore,...

10.1109/icccbda51879.2021.9442546 article EN 2021-04-24

In recent years, the rapid development of wearable disposable electronic devices and increasing awareness environmental sustainability have put forward higher new requirements for natural degradability current systems. This paper proposes a low-cost method to produce high-performance biodegradable flexible capacitive sensor which composed degradable glycerol/chitosan dielectric layer with micro-protrusions two copper nanowire/chitosan electrodes. The obtained exhibits excellent sensing...

10.2139/ssrn.4060809 article EN SSRN Electronic Journal 2022-01-01

In recent years, the rapid development of wearable disposable electronic devices and increasing awareness environmental sustainability have put forward higher new requirements for natural degradability current systems. This paper proposes a low-cost method to produce high-performance biodegradable flexible capacitive sensor which composed degradable glycerol/chitosan dielectric layer with micro-protrusions two copper nanowire/chitosan electrodes. The obtained exhibits excellent sensing...

10.2139/ssrn.4054606 article EN SSRN Electronic Journal 2022-01-01
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