Ion-Conducting, Supramolecular Crosslinked Elastomer with a Wide Linear Range of Strain Resistances

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초록

A conductive elastomer is stretchable and can exhibit ionic or electrical conductivity. However, its resistivity increases exponentially when a small number of strain changes are provided owing to irreversible internal deformation. Therefore, securing a wide range of linearity in the resistance-strain relationship is an important topic in the preparation of highly reliable conductive elastomers. Herein, an ionic conductive elastomer is prepared using 2-methoxyethyl acrylate (MA) and a molecular necklace-like polyrotaxane (PRX) cross-linker to impart reversible elastic properties. The MAPRX exhibits a superior stretchability of up to 1420% with a tensile strength of 0.52 MPa. Besides, it shows a wide range of strain-resistance linearities (similar to 1100%) owing to the slidable supramolecular cross-linkers. Its linear sensitivity to the provided strain makes it possible to apply it to facile wearable strain sensors with good reproducibility.

키워드

polyrotaxanessupermoleculesconductive elastomersslidable cross-linkersstrain sensorPOLYMER ELECTROLYTESSENSORPOLYROTAXANETRANSPARENTMECHANICSFILM
제목
Ion-Conducting, Supramolecular Crosslinked Elastomer with a Wide Linear Range of Strain Resistances
저자
Kim, BitgaramPark, TaesungOh, Soong JuSeo, Ji-Hun
DOI
10.1021/acsapm.1c00773
발행일
2021-10-08
유형
Article
저널명
ACS Applied Polymer Materials
3
10
페이지
5012 ~ 5021