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STABILITY OF EFFICIENT ITO-FREE INVERTED ORGANIC SOLAR CELLS

机译:高效ITO-倒置有机太阳能电池的稳定性

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The stability of encapsulated inverted organic P3HT: PCBM solar cells under illumination with 1000 W/m~2 by a sulphur plasma lamp (low UV-light intensity) at a temperature of 50°C in air is investigated. A thin layer of titanium or chromium as buffer layer on the aluminium electrode is used as electron contact. It turns out that devices with chromium as buffer layer are significantly more stable than devices with titanium as buffer layer. For 3% efficient devices with chromium as buffer layer, after a fast decrease on the first day, the efficiency recovers partially and stabilises at ca. 90% of the initial value). After this transient effect the efficiency decreases less than 10% during 1500h. Auger electron spectroscopy shows, that the metallic electron contact in the inverted solar cell is partially oxidised already for as prepared devices.
机译:研究了封装的倒置有机P3HT:通过硫等离子体灯(低紫外光强度)在空气中的50℃的温度下照明的PCBM太阳能电池的稳定性。用薄薄的钛或铬作为铝电极上的缓冲层用作电子触点。事实证明,具有铬作为缓冲层的装置比用钛作为缓冲层更稳定。对于3%的铬作为缓冲层的效率,在第一天快速减少后,效率部分地恢复并在CA稳定。 90%的初始值)。在此瞬态效果之后,在1500h期间,效率降低了小于10%。螺旋钻电子光谱显示,倒置太阳能电池中的金属电子接触已被掺入为制备的装置。

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