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    • 8. 发明申请
    • LARGE SCALE MANUFACTURING OF HYBRID NANOSTRUCTURED TEXTILE SENSORS
    • 混合纳米结构纺织传感器的大规模制造
    • US20160222539A1
    • 2016-08-04
    • US14995334
    • 2016-01-14
    • Nanowear Inc.
    • Vijay K. VaradanPratyush RaiSe Chang Oh
    • C25D17/00C25D13/02C25D13/12C25D9/04C25D13/22C25D7/00C25D9/02C25D13/06C25D13/20
    • C25D5/56B82Y15/00B82Y30/00B82Y40/00B82Y99/00C23C18/1641C23C18/1692C23C18/2086C23C18/285C23C18/44
    • A process for the large scale manufacturing of vertically standing hybrid nanometer-scale structures of different geometries, including fractal architecture made of flexible materials, on a flexible substrate including textiles is disclosed. The nanometer-scale structures increase the surface area of the substrate. The nanometer-scale structures may be coated with materials that are sensitive to various physical parameters or chemicals such as but not limited to temperature, humidity, pressure, atmospheric pressure, electromagnetic signals originating from biological or non-biological sources, volatile gases, and pH. The increased surface area achieved through the disclosed process is intended to improve the sensitivity of the sensors formed by coating of the nanometer-scale structure and substrate with a material which can be used to sense physical parameters and chemicals as listed previously. An embodiment with nanometer-scale structures on a textile substrate coated with a conductive, malleable and bio-compatible sensing material for use as a biopotential measurement electrode is provided.
    • 公开了一种用于在包括纺织品的柔性基板上大规模生产具有不同几何形状的垂直立式混合纳米尺度结构(包括由柔性材料制成的分形结构)的方法。 纳米级结构增加了基片的表面积。 纳米级结构可以涂覆有对各种物理参数或化学物质敏感的材料,例如但不限于温度,湿度,压力,大气压,源自生物或非生物来源的电磁信号,挥发性气体和pH 。 通过公开的方法实现的增加的表面积旨在通过用可以用于感测如前所述的物理参数和化学物质的材料来提高由纳米尺度结构和基底涂覆形成的传感器的灵敏度。 提供了在涂覆有用作生物电位测量电极的导电,可延展和生物相容感测材料的纺织基材上的纳米级结构的实施方案。