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Ferroelectric/Dielectric Double Gate Insulator Spin-Coated Using Barium Titanate Nanocrystals for an Indium Oxide Nanocrystal-Based Thin-Film Transistor

机译:钛酸钡纳米晶体用于基于氧化铟纳米晶体的薄膜晶体管的旋涂铁电/介电双栅极绝缘子

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Barium titanate nanocrystals (BT NCs) were prepared under solvothermal conditions at 200 degrees C for 24 h. The shape of the BT NCs was tuned from nanodot to nanocube upon changing the polarity of the alcohol solvent, varying the nanosize in the range of 14-22 nm. Oleic acid-passivated NCs showed good solubility in a nonpolar solvent. The effect of size and shape of the BT NCs on the ferroelectric properties was also studied. The maximum polarization value of 7.2 mu C/cm(2) was obtained for the BT-5 NC thin film. Dielectric measurements of the films showed comparable dielectric constant values of BT NCs over 1-100 kHz without significant loss. Furthermore, the bottom gate In2O3 NC thin film transistors exhibited outstanding device performance with a field-effect mobility of 11.1 cm(2)V(-1) s(-1) at a low applied gate voltage with BT-5 NC/SiO2 as the gate dielectric. The low-density trapped state was observed at the interface between the In2O3 NC semiconductor and the BT-5 NCs/SiO2 dielectric film. Furthermore, compensation of the applied gate field by an electric dipole-induced dipole field within the BT-5 NC film was also observed.
机译:钛酸钡纳米晶体(BT NCs)在溶剂热条件下于200摄氏度下制备24小时。通过改变醇溶剂的极性,将纳米尺寸在14-22 nm范围内变化,将BT NCs的形状从纳米点调整为纳米立方体。油酸钝化的NCs在非极性溶剂中显示出良好的溶解性。还研究了BT NCs的尺寸和形状对铁电性能的影响。 BT-5 NC薄膜的最大极化值为7.2μC / cm(2)。薄膜的介电测量结果显示,BT NC在1-100 kHz范围内具有可比的介电常数值,且无明显损耗。此外,底栅In2O3 NC薄膜晶体管在以BT-5 NC / SiO2作为低施加栅电压的情况下,具有出色的器件性能和11.1 cm(2)V(-1)s(-1)的场效应迁移率。栅极电介质。在In2O3 NC半导体与BT-5 NCs / SiO2介电膜之间的界面处观察到了低密度的捕获状态。此外,还观察到由BT-5 NC膜内的电偶极子引起的偶极子场对施加的栅极场的补偿。

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