首页> 外文会议>Materials Research Society Symposium >High efficiency Copper Indium Gallium Diselenide (CIGS) by High Power Impulse Magnetron Sputtering (HIPIMS): A promising scalable application in thin-film photovoltaics
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High efficiency Copper Indium Gallium Diselenide (CIGS) by High Power Impulse Magnetron Sputtering (HIPIMS): A promising scalable application in thin-film photovoltaics

机译:高功率脉冲磁控溅射(HIPIMS)的高效铜铟镓酶(CIGS):薄膜光伏中有希望和可伸缩的应用

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A novel method to deposit Copper Indium Gallium Diselenide (CIGS) using High Power Impulse Magnetron Sputtering (HIPIMS) was demonstrated and compared to the existing DC magnetron sputtering process. The metal-ion assisted thin-film growth inherent to a HIPIMS deposition process was used to advantage in depositing CIGS films. The HIPIMS plasma was characterized by measuring ion currents on a Langmuir probe placed into the plasma sufficiently close to the substrate. The high density plasma consisting of both metal and metal ions resulted in CIGS thin-film solar cells of superior conversion efficiencies (~13%) as compared to conventional DC magnetron sputtering (~10%). The efficiency enhancement was attributed to the improvement in the shunt resistance of the solar cell which corresponds to the increase in the density of the CIGS layer. Furthermore, it was also possible to grow large grained CIGS (~1 micron) with high mobility metal-ions from the HIPIMS process. The scalability potential of the HIPIMS CIGS process was also demonstrated by running a 1.5 m long Copper-Indium-Gallium rotatable in a selenium environment using a HIPIMS power supply. The cylindrical magnetron was run at an average power of 7.8 KW and peak powers of as much as 300 KW with controlled arcing. The existence of a HIPIMS plasma was confirmed by the ion currents on the Langmuir probe and the metal signals from a Plasma Emission Monitor (PEM).
机译:用高功率脉冲磁控溅射(HIPIMS)进行储存铜铟镓纤维化(CIG)的新方法并与现有的DC磁控溅射工艺进行了比较。在沉积CIGS薄膜的情况下,使用对Hipims沉积过程固有的金属离子辅助薄膜生长。 Hipims等离子体的特征在于测量放置在足够靠近基板的等离子体中的Langmuir探针上的离子电流。与常规DC磁控溅射相比(〜10%)相比,由金属和金属离子组成的高密度等离子体由金属和金属离子组成的CIGS薄膜太阳能电池(〜13%)。效率增强归因于太阳能电池的分流电阻的改善,其对应于CIGS层的密度的增加。此外,还可以从Hipims方法中生长具有高迁移率金属离子的大颗粒的CIGS(〜1微米)。还通过使用HIPIMS电源在硒环境中旋转的1.5米长的铜铟镓来证明HIPIMS CIGS方法的可扩展性电位。圆柱形磁控管以7.8kW的平均功率和高达300 kW的峰值,控制电弧电弧。通过Langmuir探针上的离子电流和来自等离子体发射监测器(PEM)的金属信号的离子电流确认了Hipims等离子体的存在。

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