2023
DOI: 10.1007/978-3-031-22524-6_1
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An Overview of Graphene-Based Nanomaterials in Electronic Skin Biosensing

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Cited by 6 publications
(3 citation statements)
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“…The research advances in micro-nano electronics using innovative polymer-based materials are mainly in flexible electronics [182][183][184][185][186][187][188][189][190][191][192][193][194][195][196][197][198][199][200], the synthesis of new materials having enhanced electrical properties [201][202][203][204][205][206][207][208][209][210][211][212][213][214][215][216][217][218], micro-/nanocircuits [219][220][221][222][223][224][225][226][227], and electronic components [228][229]…”
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confidence: 99%
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“…The research advances in micro-nano electronics using innovative polymer-based materials are mainly in flexible electronics [182][183][184][185][186][187][188][189][190][191][192][193][194][195][196][197][198][199][200], the synthesis of new materials having enhanced electrical properties [201][202][203][204][205][206][207][208][209][210][211][212][213][214][215][216][217][218], micro-/nanocircuits [219][220][221][222][223][224][225][226][227], and electronic components [228][229]…”
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confidence: 99%
“…In Table 5 are listed the selected works in micro-nano electronics and photonics, showing possible AI solutions gaining electrical and mechanical properties. Recent applications of flexible electronics are in shape memory biomedical devices [182], energy-harvesting human body sensing [183][184][185][186][187], flexible electronic components for storage computing [188][189][190], flexible electronic skin [191][192][193][194][195][196][197], electro-mechanical sensing [198] (pressure, strain, shear stress and vibration forces), and embedding devices [199,200]. Possible upgrades of the research include…”
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confidence: 99%
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