Wang Hao, Pastorin Giorgia, Lee Chengkuo
Department of Electrical and Computer EngineeringNational University of Singapore4 Engineering Drive 3Singapore117576Singapore; Center for Sensors and MEMSNational University of Singapore4 Engineering Drive 3Singapore117576Singapore; Singapore Institute for Neurotechnology (SiNAPSE)National University of Singapore28 Medical Drive, #05-CORSingapore117456Singapore; NUS Suzhou Research Institute (NUSRI)Suzhou Industrial ParkSuzhou215123P. R. China.
Pharmacy Department National University of SingaporeSingapore117543Singapore; NanoCoreFaculty of EngineeringNational University of SingaporeSingapore117576Singapore; NUS Graduate School for Integrative Sciences and EngineeringCentre for Life Sciences (CeLS)Singapore117456Singapore.
Adv Sci (Weinh). 2016 Apr 19;3(9):1500441. doi: 10.1002/advs.201500441. eCollection 2016 Sep.
is developed with bendable microneedles, dry adhesive and triboelectric energy harvester (TEH). The bendable microneedle array can overcome the needle breakage issue. The dry adhesive can realize a conformal attachment. The TEH can generate power when attached on flat skin or joint to power active components to be integrated in the future.
它是由可弯曲微针、干粘合剂和摩擦电能量收集器(TEH)开发而成。可弯曲微针阵列能够克服针头折断问题。干粘合剂可实现贴合附着。当附着在平坦皮肤或关节上时,摩擦电能量收集器能够发电,为未来要集成的有源组件供电。