2022
DOI: 10.1016/j.bios.2022.114031
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Functional graphene paper from smart building to sensor application

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Cited by 9 publications
(4 citation statements)
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“…In recent years, with the rapid development of flexible electronic devices, flexible strain sensors showed their use in applications such as in wearable electronic devices including health monitoring, motion monitoring and electronic skin. Among them, carbonbased materials have become the main choice for strain sensors because of their good electrical conductivity, high chemical stability, and functionalizable properties [231][232][233]. At present, carbon-based strain sensors have shown great potential in sensing, and their versatility has been proven through their ability to be used in various fields.…”
Section: Challengesmentioning
confidence: 99%
“…In recent years, with the rapid development of flexible electronic devices, flexible strain sensors showed their use in applications such as in wearable electronic devices including health monitoring, motion monitoring and electronic skin. Among them, carbonbased materials have become the main choice for strain sensors because of their good electrical conductivity, high chemical stability, and functionalizable properties [231][232][233]. At present, carbon-based strain sensors have shown great potential in sensing, and their versatility has been proven through their ability to be used in various fields.…”
Section: Challengesmentioning
confidence: 99%
“…Notably, portable sensing systems, which combine ECBSs with processing and communication units, have emerged in recent years. 40,129 Moreover, accompanied by the development of advanced ECBSs, portable and wearable sensing systems can not only track physical exercise activity based on bioelectrical sensing but also extend to tracking other biomarkers based on biochemical sensing. As a result, next-generation portable and wearable biosensing systems hold the capability to conduct prognostic judgment and illness monitoring.…”
Section: Portable and Wearable Biosensing Systems Based On Ecbss For ...mentioning
confidence: 99%
“…It is worth noting that, a biosensor consists of a transducer and a biorecognition element. While, most existing reviews about ECBSs mainly focus on the former part, with detailed discussions on electrode materials, fabrication methods, [37][38][39][40] and electrochemical techniques, 41 a few reviews focused on the classification of typical biorecognition elements, 12,13,[42][43][44] wearable ECBS platforms for sweat, tear, urine, and saliva. 45,46 However, a comprehensive review that critically concludes and evaluates the emerging ECBSs based on saliva electrolytes for rapid detection and diagnosis, including their similarities and differences in the fabrication process and clinical applications, is still missing.…”
Section: Introductionmentioning
confidence: 99%
“…Various graphene-based electrodes for analysis purposes have been developed by taking the advantages of its excellent electric conductivity, large specific area and electrocatalytic activity. Graphene can significantly improve the electrochemical performances of the electrodes, indicating great promise for electrochemical sensing of polyhydroxy compounds [10][11][12][13][14][15].…”
Section: Introductionmentioning
confidence: 99%