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Perturbation of copper substitutional defect concentrations in CdS/CdTe heterojunction solar cell devices

机译:CDS / CDTE异质结太阳能电池装置中铜替代缺陷浓度的扰动

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The efficacy of implementing terrestrial-based photovoltaics is dictated by trade-offs in device performance, cost, and reliability. Presently, the highest efficiency polycrystalline CdS/CdTe superstrate solar cells utilize hack contacts containing copper as an intentional dopant. Accelerated stress data correlates copper diffusion from this contact with performance degradation. Degradation at the device level exhibits two characteristic modes that are influenced by CdTe surface treatments prior to contacting. Rapid degradation associated with a rapidly decreasing open-circuit voltage can occur in cases where processing favors stoichiometric CdTe surfaces. Slower degradation associated with roll-over is typified by treatments favoring the presence of Te at the back contact. The chemical composition and extent of Te-rich contact interfaces is revealed by transmission electron microscopy. Deep-level transient spectroscopy of NP etched and non-etched devices show Te-rich conditions are necessary for the detection of deep-acceptor Cu{sub}(Cd) defect levels at (E{sub}v +0.28 to 0.34 eV). Low keV cathodoluminescence measurements show that these defects can be found localized at the back surface of CdS/CdTe devices.
机译:实施基于地面的光伏的功效是通过设备性能,成本和可靠性的权衡来决定的。目前,最高效率的多晶CDS / CDTEStrate太阳能电池利用包含铜作为有意掺杂剂的破解触点。加速应力数据将铜扩散与性能下降相关联。装置水平的降解表现出两种特征模式,其在接触之前受CdTe表面处理的影响。在加工处理有利于化学计量CDTE表面的情况下,可以发生与快速降低的开路电压相关联的快速降解。与卷眼相关的较慢的降解是通过有利于在背面接触处存在的治疗的治疗。通过透射电子显微镜揭示了富含TE的接触界面的化学成分和程度。 NP蚀刻和非蚀刻器件的深层瞬态光谱显示出富有的条件是检测(E {Sub} V +0.28至0.34eV)的深度受体Cu {sub}(CD)缺陷水平所必需的。低keV阴极发光测量结果表明,这些缺陷可以在CDS / CDTE器件的后表面上找到本地化。

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