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Effect of organic gate dielectric material properties on interfacial charging and discharging of pentacene MIM device

机译:有机栅介电材料性能对并五苯MIM器件界面充放电的影响

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摘要

The effect of material properties of an environmentally friendly, optically transparent dielectric material, polyterpenol, on the carrier transients within the pentacene-based double-layer MTM device was investigated. Polyterpenol films were RF plasma polymerised under varied process conditions, with resultant films differing in surface chemistry and morphology. Independent of type of polyterpenol, time-resolved EFISHG study of IZO/polyterpenol/pentacene/Au structures showed similar transient behaviour with carriers injected into pentacene from Au electrode only, confirming polyterpenol to be a suitable blocking layer for visualisation of single-species carrier transportation during charging and discharging under different bias conditions. Polyterpenol fabricated under higher input power show better promise due to higher chemical and thermal stability, improved uniformity, and absence of defects.
机译:研究了环保的光学透明介电材料聚萜烯的材料性能对并五苯双层MTM器件中载流子瞬变的影响。聚萜烯薄膜在不同的工艺条件下进行射频等离子体聚合,所得薄膜的表面化学和形态不同。与聚萜烯类化合物的类型无关,对IZO /聚萜烯/并五苯/ Au结构进行时间分辨的EFISHG研究表明,仅从Au电极注入并五苯中的载流子具有相似的瞬态行为,这证明聚萜烯是适合可视化单物种载流子运输的阻挡层在不同偏压条件下的充电和放电过程中。由于较高的化学和热稳定性,改进的均匀性和无缺陷,在较高输入功率下制备的聚萜烯显示出更好的前景。

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