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    • 2. 发明授权
    • Flexible nanocomposite generator and method for manufacturing the same
    • 柔性纳米复合材料发生器及其制造方法
    • US08803406B2
    • 2014-08-12
    • US13307870
    • 2011-11-30
    • Keon Jae LeeKwi-Il ParkDo Kyung KimSang Ouk KimGeon-Tae Hwang
    • Keon Jae LeeKwi-Il ParkDo Kyung KimSang Ouk KimGeon-Tae Hwang
    • H01L41/113H01L41/18
    • H01L41/37B82Y30/00H01L41/113H01L41/183
    • There are provided a flexible nanocomposite generator and a method of manufacturing the same. A flexible nanocomposite generator according to the present invention includes a piezoelectric layer formed of a flexible matrix containing piezoelectric nanoparticles and carbon nanostructures; and electrode layers disposed on the upper and lower surfaces of both sides of the piezoelectric layer, in which according to a method for manufacturing a flexible nanocomposite generator according to the present invention and a flexible nanogenerator, it is possible to manufacture a flexible nanogenerator with a large area and a small thickness. Therefore, the nanogenerator may be used as a portion of a fiber or cloth. Accordingly, the nanogenerator according to the present invention generates power in accordance with bending of attached cloth, such that it is possible to continuously generate power in accordance with movement of a human body.
    • 提供了一种柔性纳米复合发生器及其制造方法。 根据本发明的柔性纳米复合发生器包括由含有压电纳米颗粒和碳纳米结构的柔性基体形成的压电层; 以及设置在压电体层的两侧的上表面和下表面上的电极层,其中根据本发明的柔性纳米复合材料发生器的制造方法和柔性纳米发生器,可以制造具有 面积大,厚度小。 因此,纳米发生器可以用作纤维或布的一部分。 因此,根据本发明的纳米发生器根据附着的布的弯曲产生动力,使得可以根据人体的运动连续发电。