压阻效应
制作
材料科学
纳米技术
复合材料
光电子学
医学
病理
替代医学
作者
Shengxi Liu,Lei Gao,Bin Liu,Yiyun Li,Gaochuang Yang,Jinqing Wang
标识
DOI:10.1021/acsaelm.5c01173
摘要
Oral pathologies may compromise bite force magnitude, necessitating technological advancements in quantitative detection. To address this measurement gap, this work develops a flexible piezoresistive sensor based on reduced graphene oxide/polydimethylsiloxane (rGO/PDMS) composite aerogels. The preparation integrates hydrothermal reduction synthesis of rGO aerogels with systematic PDMS mass fraction optimization (0–69.1%), achieving the physical bonding of two components. When the PDMS mass fraction reached 41.4%, the composite aerogel achieved a compressive strength of 7.90 MPa and a cell viability of 97.23 ± 4.21%. The sensor based on rGO/PDMS composite aerogel exhibited a response time of 88 ms, a recovery time of 117 ms, and exceptional cyclic stability, with a resistance time drift of 2.49% per hour over 1000 cycles. During dental model testing, it successfully detected varying occlusion peaks of the first molar and achieved real-time USB data transmission. This breakthrough enables precise quantification of occlusal forces through synergistic integration of advanced nanomaterials and digital sensing technologies, significantly advancing personalized dental diagnostics.
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