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Study of copper-free back contacts to thin film cadmium telluride solar cells.

机译:薄膜碲化镉太阳能电池无铜背接触的研究。

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The goals of this project are to study Cu free back contact alternatives for CdS/CdTe thin film solar cells, and to research dry etching for CdTe surface preparation before contact application. In addition, an attempt has been made to evaluate the stability of some of the contacts researched. The contacts studied in this work include ZnTe/Cu2Te, Sb2Te 3, and Ni-P alloys.; The ZnTe/Cu2Te contact system is studied as basically an extension of the earlier work done on Cu2Te at USF. RF sputtering from a compound target of ZnTe and Cu2Te respectively deposits these layers on etched CdTe surface. The effect of Cu2Te thickness and deposition temperature on contact and cell performance will be studied with the ZnTe depositions conditions kept constant. C-V measurements to study the effect of contact deposition conditions on CdTe doping will also be performed. These contacts will then be stressed to high temperatures (70--100°C) and their stability with stress time is analyzed.; Sb2Te3 will be deposited on glass using RF sputtering, to study film properties with deposition temperature. The Sb2Te 3 contact performance will also be studied as a function of the Sb 2Te3 deposition temperature and thickness.; The suitability of Ni-P alloys for back contacts to CdTe solar cells was studied by forming a colloidal mixture of Ni2P in graphite paste. The Ni-P contacts, painted on Br-methanol etched CdTe surface, will be studied as a function of Ni-P concentration (in the graphite paste), annealing temperature and time. Some of these cells will undergo temperature stress testing to determine contact behavior with time.; Dry etching of CdTe will be studied as an alternative for wet etching processes currently used for CdTe solar cells. The CdTe surface is isotropically etched in a barrel reactor in N2, Ar or Ar:O 2 ambient. The effect of etching ambient, pressure, plasma power and etch time on contact performance will be studied.
机译:该项目的目标是研究CdS / CdTe薄膜太阳能电池的无铜背接触替代方法,并研究在接触应用之前对CdTe表面制备进行干法蚀刻。另外,已经尝试评估一些所研究的触点的稳定性。在这项工作中研究的接触点包括ZnTe / Cu2Te,Sb2Te 3和Ni-P合金。 ZnTe / Cu2Te接触系统的研究基本上是对USF在Cu2Te上所做的早期工作的扩展。来自ZnTe和Cu2Te复合靶材的RF溅射分别将这些层沉积在蚀刻的CdTe表面上。在保持不变的ZnTe沉积条件下,将研究Cu2Te厚度和沉积温度对接触和电池性能的影响。还将进行C-V测量以研究接触沉积条件对CdTe掺杂的影响。然后将这些触点承受高温(70--100°C)的应力,并分析其在应力作用下的稳定性。将使用RF溅射将Sb2Te3沉积在玻璃上,以研究沉积温度下的薄膜特性。 Sb2Te 3的接触性能也将作为Sb 2Te3沉积温度和厚度的函数进行研究。通过在石墨浆料中形成Ni2P的胶体混合物,研究了Ni-P合金与CdTe太阳能电池背接触的适用性。将研究在Br-甲醇蚀刻的CdTe表面上涂的Ni-P接触点与Ni-P浓度(在石墨糊中),退火温度和时间的函数关系。这些电池中的一些将经受温度应力测试,以确定随时间的接触行为。将研究CdTe的干法刻蚀,作为目前用于CdTe太阳能电池的湿法刻蚀工艺的替代方法。在N2,Ar或Ar:O 2环境中的桶式反应器中各向同性蚀刻CdTe表面。将研究蚀刻环境,压力,等离子功率和蚀刻时间对接触性能的影响。

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