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High-Energy Electron and Proton Irradiation of Cu(In,Ga)Se2 Heterojunction Solar Cells

机译:Cu(IN,GA)SE2异质结太阳能电池的高能量电子和质子辐射

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We investigate radiation-induced defects in high-efficiency Cu(In,Ga)Se2/CdS/ZnO heterojunction solar cells after 1-MeV electron and 4-MeV proton irradiation.We use electron and proton fluences of more than 1018 cm~2 and up to 1014 cm'2,respectively.The irradiation experiments performed at three independent electron irradiation facilities consistently prove the superior radiation resistance of these Cu(In,Ga)Se2 devices compared to other types of solar cells.The reduction of the solar cell efficiency in all experiments is predominantly caused by a loss DELTA V_(oc)of the open circuit voltage V_(oc).An analytical model describes DELTA V_(oc) in terms of radiation-induced defects enhancing recombination in the Cu(In,Ga)Se2 absorber material.From our model we extract the defect introduction rates for recombination centers in Cu(In,Ga)Se2 for the respective particles and energies.Isochronal annealing steps fully recover V_(oc).of the irradiated Cu(In,Ga)Se2 solar cells.Exposure to temperatures of approx.400 K are sufficient to restore the initial V_(oc) within less than 5 %,even after excessive irradiation.The annealing process displays an activation energy of E_A =1.1 eV.Admittance spectroscopy directly reveals the generation and the annealing of radiation-induced defects.
机译:我们在1-MEV电子和4MEV质子照射后调查高效Cu(IN,GA)SE2 / CDS / ZnO异质结太阳能电池的辐射诱导的缺陷。我们使用电子和质子流量超过1018cm〜2和分别在三个独立的电子照射设施中进行的照射实验分别始终如一地证明与其他类型的太阳能电池相比,这些Cu(In,Ga)Se2器件的卓越辐射性。太阳能电池效率降低在所有实验中主要由开路电压V_(OC)的损失ΔV_(oc)引起的.AN分析模型描述了辐射诱导的缺陷增强Cu(Ga)中的重组的缺陷(oc)的ΔV_(oc) SE2吸收剂材料。通过我们的模型,我们提取Cu(In,Ga)Se2中的重组中心的缺陷引入速率,用于各自的颗粒和能量。异象退火步骤完全恢复V_(OC)。辐照的Cu(Ga)。 SE2太阳能电池。曝光至脾气即使在过度照射之后,大约400 k的ures足以恢复在小于5%内的初始V_(OC)。退火过程显示E_A = 1.1 eV.Admittance光谱的激活能量直接显示出的产生和退火辐射诱导的缺陷。

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