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Zinc diketonates as single source precursors for ZnO nanoparticles: microwave-assisted synthesis, electrophoretic deposition and field-effect transistor device properties

机译:二酮酸锌作为ZnO纳米粒子的单一来源前体:微波辅助合成,电泳沉积和场效应晶体管器件性能

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The microwave-assisted decomposition of zinc diketonates in acetonitrile leads to stable dispersions of zinc oxide nanoparticles. The variation of the diketonato ligand framework permits controlling the size of primary crystallites and soft agglomerates, which allows the synthesis of nanoparticles in the range of 4-6 nm. Field-effect transistors are fabricated with charge carrier mobility as high as 0.32 cm(2) V-1 s(-1) and an I-on/off ratio of similar to 10(6) after post-annealing at only 250 degrees C in air. Their superior performance is attributed to the dense packing of the ZnO particles in the semiconducting layer. Dispersions in aprotic solvent are suitable for a cathodic electrophoretic deposition of ZnO layers on ITO coated glass electrodes. Uniform ZnO coatings exhibiting interference colours can be obtained with thicknesses of several hundred nanometers.
机译:微波辅助的乙酮中二酮酸锌的分解会导致氧化锌纳米粒子的稳定分散。二酮酮配体骨架的变化允许控制初级微晶和软团聚物的尺寸,这允许合成4-6nm范围内的纳米颗粒。仅在250摄氏度的温度下进行后退火后,制造的载流子迁移率高达0.32 cm(2)V-1 s(-1)且I-on / off比接近10(6)的场效应晶体管在空中。它们的优异性能归因于ZnO颗粒在半导体层中的致密堆积。在质子惰性溶剂中的分散液适用于ZnO层在ITO涂层玻璃电极上的阴极电泳沉积。可以获得具有干涉色的均匀的ZnO涂层,其厚度为几百纳米。

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