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Simple Preparation of ZnO Nano-layer by Sol-Gel Method as Active Electrode in P3HT/ZnO Heterojunction Solar Cell

机译:通过溶胶 - 凝胶法在P3HT / ZnO异质结太阳能电池中制备ZnO纳米层作为活性电极的制备

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Highly transparent undoped ZnO thin films have been prepared on glass and indium tin oxide substrates with simple process by sol-gel route and dip-coating deposition Gel precursor of ZnO was prepared from zinc acetat dehydrate solution in methanol with the addition of trietylamine as stabilizing agent. Thin layer of gel precursor was prepared by dip coating and then followed by calcination at 40°C for 5 minute in air atmosphere. The thickness of the resulted ZnO thin film produced by ten times coating is about 150 nm The films shows high transmittance larger than 98% in the visible region (400-800 nm). Absorption is observed in the UV region with absorption onset at about 390 nm indicating varying band gap between 3.18 eV until 3.23 eV depending on the number of coating layer. The AFM image shows that the films seems to be constructed from random stacking of nano-sized ZnO particle in the order of 50 nm. Among the prepared samples, the lowest resistivity is about 1.8 x 10~7 ?m observed in the five-layer coating film. In order to fabricate solar cell structure, P3HT was deposited onto the ZnO thin film layer by spin casting technique and then followed by metal (Au) layer deposition by thermal evaporation The formed solar cell has the inverted type solar cell with ITO/ZnO/P3HT/Au configuration. By the insertion ZnO layer, the photocurrent was improved by more than ten orders of magnitude in comparison to that of without ZnO layer. The measured photocurrent decreases at large number of coating layer which is supposed to be related with the current limitation by the effective carrier path length in ZnO layer.
机译:已经在玻璃上制备高度透明的未透明的ZnO薄膜,并通过溶胶 - 凝胶途径的简单工艺制备氧化铟锡基材,并用甲醇中的丙酸乙酰乙酰脱水溶液中的浸涂沉积凝胶前体与加入特里曼胺作为稳定剂。 。通过浸涂制备薄层前体,然后在40℃下煅烧,在空气气氛中煅烧5分钟。由十倍涂层制备的所得ZnO薄膜的厚度为约150nm,薄膜显示出在可见区域(400-800nm)中大于98%的高透射率。在UV区域中观察到吸收,在约390nm处,在约390nm处表示在3.18eV之间的不同带隙,直至3.23eV取决于涂层的数量。 AFM图像表明,薄膜似乎是由纳米尺寸ZnO颗粒的随机堆叠的组成,约50nm。在制备的样品中,在五层涂膜中观察到最低电阻率约为1.8×10〜7·m。为了制造太阳能电池结构,通过旋铸技术将P3HT沉积到ZnO薄膜层上,然后通过热蒸发进行金属(Au)层沉积,形成的太阳能电池具有ITO / ZnO / P3HT的倒立式太阳能电池/ au配置。通过插入ZnO层,与没有ZnO层的没有ZnO层相比,光电流通过超过10个数量级得到改善。测量的光电流在大量涂层中降低,该涂层应该与ZnO层中有效载体路径长度的电流限制有关。

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