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Fabrication of conductive polypyrrole/polyurethane composite fibers for large strain sensing

机译:用于大应变感应的导电聚吡咯/聚氨酯复合纤维的制备

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A kind of flexible, conductive polypyrrole-coated polyurethane (PPy/PU) fibers was fabricated by controlled chemical polymerization and its strain sensing ability was evaluated. The as-prepared fibers possessed high conductivity with a maximum value of 10~(-1) (O'cm)~(-1), and highly elastic nature of the PU matrix. It is further found that dense PPy layer was covered uniformly onto PU fiber surface, and an interpenetrating interface and strong hydrogen bonding interaction could be observed, which greatly benefited their high structural stability. More importantly, the composite fibers exhibited a wide strain deformation range up to 250% and high strain sensitivity of over 20 (at the large strain of 50%), and good reversible resistance response on cyclic force loading, which would open a high opportunity for fabricating strain sensing material in large volume for future smart device applications.
机译:通过受控的化学聚合制备一种柔性导电聚吡咯涂覆的聚氨酯(PPY / PU)纤维,并评估其应变感测能力。制备的纤维具有高导电性,最大值为10〜(-1)(O'cm)〜(-1),并且PU基质的高弹性性质。进一步发现,致密的PPY层均匀地覆盖到PU纤维表面上,并且可以观察到互穿界面和强氢键相互作用,这极大地利用了它们的高结构稳定性。更重要的是,复合纤维呈宽应变变形范围,高达250%,高应变敏感性超过20(在50%的大应变中),以及对循环力负载的良好可逆抵抗响应,这将开启高机会为未来的智能设备应用构造大容量的应变传感材料。

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