三维基底表面碳基透明电极的研究现状及展望

Research Status and Prospects of Carbon Based Transparent Electrodeon Three-dimensional Substrate Surface

  • 摘要: 三维基底表面上制备的透明电极具备散射高、比表面积大的性能优势,基于此,一方面可以提升太阳能电池的光电转化效率,另一方面比表面积大可以提升透明电容器的电荷储量。当前,已经进行的研究主要是以银纳米线为主的金属纳米线透明电极技术,然而金属纳米线一方面成本高、另一方面金属本身的特性与半导体材料配合使用时有一定的局限性。相比而言,碳基材料(主要为碳纳米管、石墨烯)的成本低,同时碳与当前的主要半导体材料硅为同一主族元素,因此相比于金属材料更有利于和半导体材料结合。基于上述内容,碳基材料制备到三维基底表面上具有更深远的研究意义。

     

    Abstract: The transparent electrode prepared on the three-dimensional substrate surface has the performance advantages of high scattering and large specific surface area. Based on this, on the one hand, it can improve the monochromatic incident photon-to-electron conversion efficiency of the solar cell, on the other hand, the large specific surface area can improve the charge storage of the transparent capacitor. At present, the research that has been carried out is mainly the transparent electrode technology of metal nanowires based on silver nanowires. However, on the one hand, the cost of metal nanowires is high, on the other hand, the characteristics of metal itself and the use of semiconductor materials have certain limitations. In contrast, the cost of carbon-based materials(mainly carbon nanotubes and graphene) is low. At the same time, carbon and the current main semiconductor material silicon are the same main group element, so compared with metal materials, it is more advantageous to combine with semiconductor materials. Based on the above contents, the preparation of carbon-based materials on three-dimensional substrate surface has more far-reaching research significance.

     

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