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首页> 外文期刊>Materials science-Poland: An interdisciplinary journal of physics, chemistry and technology of materials >Development of calcium titanium oxide coated silicon solar cells for enhanced voltage generation capacity
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Development of calcium titanium oxide coated silicon solar cells for enhanced voltage generation capacity

机译:开发用于增强电压产生能力的钙钛氧化物涂层硅太阳能电池

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Depletion of fossil fuel based energy sources drive the present scenario towards development of solar based alternative energy. Polycrystalline silicon solar cells are preferred due to low cost and abundant availability. However, the power conversion efficiency of polycrystalline silicon is lesser compared to monocrystalline one. The present study aims at analyzing the effect of calcium titanium oxide (CaTiO3) antireflection (AR) coating on the power conversion of polycrystalline solar cells. CaTiO3 offers unique characteristics, such as non-radioactive and non-magnetic orthorhombic biaxial structure with bulk density of 3.91 g/cm3. CaTiO3 film deposition on the solar cell substrate has been carried out using Radio Frequency (RF) magnetron sputter coating technique under varying time durations (10 min to 45 min). Morphological studies proved the formation of CaTiO3 layer and respective elemental percentages on the coated substrate. Open circuit voltage studies were conducted on bare and coated silicon solar substrates under open and controlled atmospheric conditions. CaTiO3 coated on a solar cell substrate in a deposition time of 30 min showed 8.76 % improvement in the cell voltage compared to the bare solar cell.
机译:基于化石燃料的能源的枯竭将当前情况推向了发展基于太阳能的替代能源的阶段。由于低成本和丰富的可用性,优选多晶硅太阳能电池。但是,与单晶硅相比,多晶硅的功率转换效率较低。本研究旨在分析钙钛氧化物(CaTiO3)抗反射(AR)涂层对多晶太阳能电池功率转换的影响。 CaTiO3具有独特的特性,例如非放射性和非磁性的正交双轴结构,堆积密度为3.91 g / cm3。已使用射频(RF)磁控溅射镀膜技术在不同的持续时间(10分钟至45分钟)内进行了CaTiO3薄膜在太阳能电池基板上的沉积。形态学研究证明在涂层基材上形成了CaTiO3层和相应的元素百分比。开路电压研究是在开放和受控的大气条件下,在裸露的和涂覆的硅太阳能基板上进行的。与裸太阳能电池相比,在30分钟的沉积时间内涂覆在太阳能电池基板上的CaTiO3的电池电压提高了8.76%。

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