Cite this article:
Qi-Zhang Huang, Yan-Qing Zhu, Ji-Fu Shi, Lei-Lei Wang, Liu-Wen Zhong, Gang Xu. Dye-sensitized solar cell module realized photovoltaic and photothermal highly efficient conversion via three-dimensional printing technologyJ. Chin. Phys. B, 2017, 26(3): 038401.
| Qi-Zhang Huang, Yan-Qing Zhu, Ji-Fu Shi, Lei-Lei Wang, Liu-Wen Zhong, Gang Xu. Dye-sensitized solar cell module realized photovoltaic and photothermal highly efficient conversion via three-dimensional printing technologyJ. Chin. Phys. B, 2017, 26(3): 038401. |
Dye-sensitized solar cell module realized photovoltaic and photothermal highly efficient conversion via three-dimensional printing technology
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Abstract
Three-dimensional (3D) printing technology is employed to improve the photovoltaic and photothermal conversion efficiency of dye-sensitized solar cell (DSC) module. The 3D-printed concentrator is optically designed and improves the photovoltaic efficiency of the DSC module from 5.48% to 7.03%. Additionally, with the 3D-printed microfluidic device serving as water cooling, the temperature of the DSC can be effectively controlled, which is beneficial for keeping a high photovoltaic conversion efficiency for DSC module. Moreover, the 3D-printed microfluidic device can realize photothermal conversion with an instantaneous photothermal efficiency of 42.1%. The integrated device realizes a total photovoltaic and photothermal conversion efficiency of 49% at the optimal working condition. -
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