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Chemistry of active oxygen in RuOx and its influence on the atomic layer deposition of TiO2 films

机译:RuOx中活性氧的化学性质及其对TiO2薄膜原子层沉积的影响

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Rutile structured TiO2 films have received great attention as dielectric materials in capacitors of the next-generation dynamic random access memory (DRAM) due to their high dielectric constant (80-150). Ru or RuO2, which is one of the most promising electrode materials in DRAM capacitors, is indispensable to form the rutile structure. In this work, a series of the Ru-related layers with compositions ranging from Ru to RuO2 via RuOx (x: similar to 1.12) was used as a bottom electrode for the ALD growth of TiO2 films. It was found that the growth per cycle of TiO2 at the initial growth stage was drastically increased on RuOx (RuO2/Ru mixture) compared to Ru and RuO2. This is attributed to the drastic increase in the chemical activity of oxygen in the mixture film of RuO2/Ru. The catalytic decomposition of RuO2 with the help of Ru in the film played the crucial role for the increase in the active oxygen. Although RuO2 and Ru mostly retained their structures during the ALD of TiO2 or chemical etching using O-3 gas, the RuOx film, which was composed of 56% RuO2 and 44% Ru, drastically changed its phase composition during the ALD of TiO2 at 250 degrees C and changed almost to Ru. Other chemical effects depending on the chemical composition and phase structure were also examined in detail.
机译:金红石结构的TiO2薄膜由于其介电常数高(80-150),已成为下一代动态随机存取存储器(DRAM)电容器中的介电材料,引起了广泛关注。 Ru或RuO2是DRAM电容器中最有希望的电极材料之一,不可或缺以形成金红石结构。在这项工作中,一系列通过RuOx(x:类似于1.12)从Ru到RuO2组成的一系列Ru相关层被用作TiO2薄膜的ALD生长的底部电极。发现与Ru和RuO2相比,RuOx(RuO2 / Ru混合物)在初始生长阶段TiO2的每周期生长显着增加。这归因于RuO2 / Ru混合膜中氧气的化学活性急剧增加。膜中Ru的帮助下RuO2的催化分解对活性氧的增加起着至关重要的作用。尽管RuO2和Ru在TiO2的ALD或使用O-3气体的化学蚀刻过程中大部分保留了其结构,但是由56%的RuO2和44%的Ru组成的RuOx膜在TiO2的ALD于250时却急剧地改变了其相组成。摄氏度,几乎变为Ru。还详细检查了取决于化学组成和相结构的其他化学作用。

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