Wang Hongxia, Niu Haitao, Zhou Hua, Wei Xin, Yang Weidong, Lin Tong
Institute for Frontier Materials , Deakin University , Geelong , VIC 3216 , Australia.
Future Manufacturing Flagship , CSIRO , Clayton South , VIC 3169 , Australia.
ACS Appl Mater Interfaces. 2019 Jun 26;11(25):22878-22884. doi: 10.1021/acsami.9b06787. Epub 2019 Jun 14.
Previous fabrics with directional fluid transport capability typically have a single function to transport liquid. Multifunctional directional fluid fabrics are highly desirable for making "smart" textiles but remain a challenge to develop. In this study, we have for the first time prepared a multifunctional, directional water transport fabric. By using a two-step coating process, we applied polypyrrole (PPy), a conducting polymer, on one side of a hydrophilic fabric (cotton). We showed that the single-side PPy-coated fabrics had reasonable conductivity (surface resistance in the range of 43-54 kΩ/□) and a one-way water transport function. We further showed that by integrating metal-plated nylon wires on the two sides, the fabric can be used as a capacitive sensor to sense water content in the fabric. The conducting layer enables the sensor device to have a sufficient capacitance response. Reasonable integration of the metal electrodes allows the device to have a minimal effect on the directional water transport and breathability of the fabric. Such a novel multifunctional fabric may find applications in making "smart" clothing.
以往具有定向流体传输能力的织物通常只有单一的液体传输功能。多功能定向流体织物对于制造“智能”纺织品非常理想,但开发起来仍然是一项挑战。在本研究中,我们首次制备了一种多功能定向输水织物。通过两步涂层工艺,我们将导电聚合物聚吡咯(PPy)涂覆在亲水性织物(棉)的一侧。我们表明,单面涂覆PPy的织物具有合理的导电性(表面电阻在43 - 54 kΩ/□范围内)和单向输水功能。我们进一步表明,通过在两侧集成镀金属尼龙线,该织物可以用作电容式传感器来检测织物中的含水量。导电层使传感器装置具有足够的电容响应。金属电极的合理集成使该装置对织物的定向输水和透气性影响最小。这种新型多功能织物可能在制造“智能”服装方面找到应用。