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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Advanced Design and Electrical Properties Simulation of Two-Dimensional Photovoltaic Devices
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Advanced Design and Electrical Properties Simulation of Two-Dimensional Photovoltaic Devices

机译:二维光伏器件的先进设计和电气性能模拟

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摘要

Photovoltaic devices have attracted much attention for decades because of their environment-friendly properties and renewable energy prospect. Solar cells with improved electrical properties such as augmented FF (fill factor) and J(SC) (short-circuit current) are investigated for sustainable energy applications. However, most of research studies focus on the change of materials and the addition of layers. Here, a novel cell with a tilted/nonflatted junction structure is proposed. A detailed study of the key electrical properties for the updated structure with the comparison with the conventional cell structure is presented. The nonflat interface between layers of the semiconductor devices could be extended to different layer interfaces besides the p-n junction, such as the interface between the top electrode and its subsequent layers. Such a nonflat design could be extended to other devices such as photoelectric detectors, lithium battery, capacitors, supercapacitors, and transistors. Simulation results show that the improved structure provides a simple alternative way to improve the key electrical properties for solar cells.
机译:由于其环保性质和可再生能源前景,光伏器件已经吸引了几十年的关注。研究了具有改进的电性能的太阳能电池,例如增强的FF(填充因子)和j(sc)(短路电流)进行可持续的能量应用。然而,大多数研究研究侧重于材料的变化和添加层。这里,提出了一种具有倾斜/非果实结结构的新细胞。提出了与与传统小区结构进行比较的更新结构的关键电特性的详细研究。除了P-n结之外,可以将半导体器件层之间的非污水界面扩展到不同的层界面,例如顶电极和其后续层之间的界面。这种非流动设计可以扩展到其他设备,例如光电检测器,锂电池,电容器,超级电容器和晶体管。仿真结果表明,改进的结构提供了一种简单的替代方法来改善太阳能电池的关键电性能。

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