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Effect of insertion of bathocuproine buffer layer at grating-structured cathode–organic-layer interface in bulk-heterojunction solar cells

机译:浴缸普罗汉缓冲层在散装结构化阴极 - 有机层界面中插入浴缸缓冲层在散装 - 异质结太阳能电池中的影响

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摘要

A grating-structured interface of a poly(3-hexylthiophene) (P3HT) and n-type [6,6]-phenyl-C61-butyric acid methyl ester (PCBM)-based bulk-heterojunction (BHJ) photovoltaic (PV) cell was designed and fabricated to obtain a desirable thickness distribution of the deposited bathocuproine (BCP) buffer layer to efficiently utilize its potentials. As a master mold of the grating-structure, a commercially available recordable digital versatile disc (DVD-R) substrate was employed. The grating-structured surface of the P3HT:PCBM layer was successfully produced by duplication from a poly(dimethylsiloxane) secondary mold using the spin cast molding technique. From morphological observations of the grating-structured surface covered with vapor-deposited BCP, we roughly estimated the ratio of the BCP thickness at “walls” to that at “top” and “bottom” regions to be ∼0.5. The grating-type BHJ PV cell with a 5-nm-thick BCP layer exhibited the maximum power-conversion efficiency (ηp) of 3.51%. Compared with the conventional flat-type BHJ PV cell with a 20-nm-thick BCP layer, the performance of the grating-type BHJ PV cell with a 20-nm-thick BCP layer was remarkably improved, owing to the contribution of the wall side contact, which provides a lower-barrier path of the electrons toward the cathode through the thinner BCP layer.
机译:聚(3-己基噻吩)(P3HT)和N型[6,6] -phenyl-C61-丁酸甲酯(PCBM)的栅格结构化界面,基团 - 异质结(BHJ)光伏(PV)电池设计和制造以获得沉积的浴缸(BCP)缓冲层的理想厚度分布,以有效地利用其电位。作为光栅结构的母模,采用市售可记录的可记录数字通用盘(DVD-R)衬底。使用旋转铸造技术从聚(二甲基硅氧烷)二次模具复制,成功地生产了P3HT的光栅结构表面。从覆盖蒸汽沉积的BCP覆盖的光栅结构表面的形态学观察中,我们大致估计了“壁”的BCP厚度与“顶部”和“底部”区域的比率估计为〜0.5。具有5-nm厚的BCP层的光栅型BHJ PV电池显示出最大功率转换效率(ηp)为3.51%。与具有20nm厚的BCP层的传统平坦的BHJ PV电池相比,由于墙壁的贡献,具有20nm厚的BCP层的光栅型BHJ PV电池的性能显着提高侧触点,通过较薄的BCP层提供电子朝向阴极的低阻挡路径。

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