Advanced Functional Composite Materials toward E‐Skin for Health Monitoring and Artificial Intelligence
Передовые функциональные композиционные материалы для создания электронной кожи в целях мониторинга состояния здоровья и искусственного интеллекта
2022-10-30
SCID: 54.1/3xtfjkeh
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artificial intelligenceelectronic skinflexible pressure sensorsfunctional polymer compositeshealth monitoring
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Abstract (AI)
Abstract Electronic skin (E‐skin), especially the wearable sensors efficiently detect various stimuli attracted huge research interest owing to their potential applications in health monitoring and artificial intelligence. On the other hand, functional polymer composites possessing excellent properties such as light weight, good flexibility, and superior electrical performances, are promising candidates as building blocks for flexible electronics. Accordingly, tremendous efforts are devoted to the development of polymer composites with functional properties for E‐skin applications. Here, recent advances on the controlled fabrication of various fillers based functional polymer composites and their diverse applications in E‐skin are reviewed. In addition, contemporary studies on fabrication strategies, working mechanisms, and device performance for E‐skin based on the functional polymer composites are reviewed, including flexible pressure sensors, strain sensors, temperature sensors, energy harvesters, and transistors. Furthermore, the applications of functional composite based flexible electronics in healthcare and artificial intelligence are discussed. Finally, the existing challenges and opportunities for the functional composite materials based E‐skin are summarized.
Key Findings
1
Applications of functional-composite flexible electronics span health monitoring and artificial intelligence.
2
Composite-based electronic skin includes flexible pressure, strain, and temperature sensors, as well as energy harvesters and transistors.
3
Functional polymer composites are promising building blocks for electronic skin because they combine low weight, flexibility, and strong electrical performance.
4
The review covers controlled fabrication of filler-based functional polymer composites and their integration into diverse electronic-skin devices.
5
The review summarizes fabrication strategies, operating mechanisms, device performance, and remaining challenges and opportunities for composite-based electronic skin.
Research Object
Functional polymer composite-based electronic skin (E-skin) and its flexible electronic devices
Research Subject
Controlled fabrication, working mechanisms, device performance, and healthcare and artificial-intelligence applications of composite-based E-skin, including pressure, strain, and temperature sensing, energy harvesting, and transistor functions
Publication Details
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2022-10-30
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