第一作者:Xie Liping
通讯作者:Liping Xie,Hong-bin Sun,Yanan Du
合写作者:Zelin Zhang,Qiushuo Wu, Zhuxuan Gao, Gaotian Mi,Renqiao Wang
发表刊物:Nanoscale
期号:2
卷号:15
DOI码:10.1039/d2nr04551f
所属单位:College of Medicine and Biological Information Engineering, Northeastern University
教研室:物理化学
刊物所在地:ENGLAND
摘要:Emerging classes of flexible electronic sensors as alternatives to conventional rigid sensors offer a power ful set of capabilities for detecting and quantifying physiological and physical signals from human skin in personal healthcare. Unfortunately, the practical applications and commercialization of flexible sensors are generally limited by certain unsatisfactory aspects of their performance, such as biocompatibility, low sensing range, power supply, or single sensory function. This review intends to provide up-to-date litera ture on wearable devices for smart healthcare. A systematic review is provided, from sensors based on nanomaterials and nanostructures, algorithms, to multifunctional integrated devices with stretchability, self-powered performance, and biocompatibility. Typical electromechanical sensors are investigated with a specific focus on the strategies for constructing high-performance sensors based on nanomaterials and nanostructures. Then, the review emphasizes the importance of tailoring the fabrication techniques in order to improve stretchability, biocompatibility, and self-powered performance. The construction of wearable deviceswithhighintegration,highperformance,andmulti-functionalization for multiparameter healthcare is discussed in depth. Integrating wearable devices with appropriate machine learning algorithms is summarized. After interpretation of the algorithms, intelligent predictions are produced to give instructions or predictions for smart implementations. It is desired that this review will offer guidance for future excellence in flexible wearable sensing technologies and provide insight into commercial wearable sensors
论文编号:WOS:000897185000001
学科门类:理学
一级学科:化学
页面范围:405-433
ISSN号:2040-3364
是否译文:否
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