Twisted and Coiled Carbon Nanotube Yarn Muscle Embedding Ferritin

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초록

Electrochemical coiled carbon nanotube yarn muscles are expected to be utilized in biosensors, drug delivery, or microsurgery. However, their low tensile actuation due to the limited applying voltage in an aqueous environment restricts further investigations in applications. Here, by embedding an iron-containing protein, called ferritin into a coiled carbon nanotube yarn muscle, the muscle stroke can be increased 10.8 times. The increased tensile contraction originates from the large electrochemical applied potential without cancellation of the stroke resulting from the potential of zero charge shift which is driven by attaching charged ferritins onto CNTs. Performance enhancement by applying biocompatible molecules encourages the potential of the coiled CNT muscle's use in the bio-environment.

키워드

aqueous electrolytecoiled carbon nanotube yarnelectrochemical artificial muscleferritinpotential of zero chargeBiocompatibilityCarbon nanotubesDrug deliveryElectrolytesEmbeddingsWoolYarnMuscleAqueous electrolyteArtificial muscleCarbon nanotube yarnsCoiled carbon nanotubeCoiled carbon nanotube yarnElectrochemical artificial muscleElectrochemicalsEmbeddingsFerritinPotential of zero charge
제목
Twisted and Coiled Carbon Nanotube Yarn Muscle Embedding Ferritin
저자
Park, Jong WoLee, Dong YeopKim, Seon Jeong
DOI
10.1109/SENSORS52175.2022.9967212
발행일
2022-10
유형
Proceedings Paper
저널명
2022 IEEE SENSORS
2022-October
페이지
1 ~ 4