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Preparation, deposition and characterization of TiOx layers for organic PLEDs, solar cells and PTFTs

机译:有机PLED,太阳能电池和PTFT的TiOx层的制备,沉积和表征

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Wide band gap materials like LiF are being used as electron/injection layers (EIL/ETL) in PLEDs, to improve their efficiency. Recently, another wide gap material, TiOx, is being studied as an alternative for these EIL/ETL layers. TiOx layers are also studied as optical spacer for PSCs. In this work, TiOx layers of different thickness were deposited by spin coating from a solution of titanium oxide gel using titanium isopropoxide as precursor. The preparation was adjusted to the local conditions of the laboratory and requirements to control film thickness. Films were characterized optically and electrically, being observed that in dependence on the preparation conditions and further dilution in ethanol, films of thickness in the range between 60 nm to more than 200 nm can be prepared. Thinner films show high current density, which in combination with the high energy gap and index of refraction of the material, can be used as electron injection/transport layer and as optical spacers. MIS capacitors using thicker films, greater than 200 nm, showed a dielectric constant greater than 12 and a critical electric field greater than 105 V/cm, which indicates than the spin coated TiOx films prepared using the described sol-gel procedure can be used also as the dielectric material in MIS structures for PTFTs.
机译:诸如LiF之类的宽带隙材料被用作PLED中的电子/注入层(EIL / ETL),以提高其效率。最近,正在研究另一种宽间隙材料TiOx,以替代这些EIL / ETL层。还研究了TiOx层作为PSC的光学隔离层。在这项工作中,使用异丙醇钛作为前体,通过从氧化钛凝胶溶液中旋涂来沉积不同厚度的TiOx层。根据实验室的当地条件和控制薄膜厚度的要求对制剂进行了调整。对膜进行光学和电学表征,观察到,取决于制备条件和在乙醇中的进一步稀释,可以制备厚度在60nm至大于200nm之间的膜。较薄的薄膜显示出高电流密度,再加上材料的高能隙和折射率,可以用作电子注入/传输层和光学隔离物。使用大于200 nm的较厚膜的MIS电容器表现出的介电常数大于12,临界电场大于10 5 V / cm,这表明与使用上述方法制备的旋涂TiOx膜相比溶胶-凝胶程序也可用作PTFT的MIS结构中的介电材料。

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