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Chemistry of ruthenium as an electrode for metal-insulator-metal capacitor application

机译:钌化学作为金属绝缘体 - 金属电容器应用的电极

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Notwithstanding its excellent properties such as high work function and low resistance, Ru has not been widely applied in the preparation of electrodes for various electronic devices. This is because of the occurrence of severe morphological degradation in the actual devices employing Ru. Herein, we investigated Ru chemistry for electrode application and the degradation mechanism of Ru during subsequent processes such as thin film deposition or thermal annealing. We revealed that subsurface oxygen induces Ru degradation owing to the alteration of Ru chemistry by the pretreatment under various gas ambient conditions and due to the growth behavior of TiO2 deposited via atomic layer deposition (ALD). The degradation of Ru is successfully ameliorated by conducting an appropriate pretreatment prior to ALD. The TiO2 thin film deposited on the pretreated Ru electrode exhibited a rutile-phased crystal structure and smooth surface morphology, thereby resulting in excellent electrical properties. This paper presents an important development in the application of Ru as the electrode that can facilitate the development of various next-generation electronic devices.
机译:尽管钌具有高功函数、低电阻等优良性能,但其在各种电子器件电极制备中的应用并不广泛。这是因为在使用Ru的实际设备中发生了严重的形态退化。在此,我们研究了用于电极应用的钌化学以及后续过程(如薄膜沉积或热退火)中钌的降解机制。我们发现,由于不同气体环境条件下的预处理改变了钌的化学性质,以及通过原子层沉积(ALD)沉积的TiO2的生长行为,亚表层氧会导致钌的降解。通过在ALD前进行适当的预处理,成功地改善了Ru的降解。在预处理的钌电极上沉积的TiO2薄膜具有金红石相的晶体结构和光滑的表面形貌,从而产生了优异的电性能。本文介绍了钌作为电极应用的一个重要进展,它可以促进各种下一代电子器件的发展。

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