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Merging the Sol–Gel Technique with the Pulsed Microplasma Cluster Source Deposition to Improve Control over the Memristive Response of TiO2 Thin Films

机译:将溶胶 - 凝胶技术与脉冲显微簇源沉积合并,以改善对TiO2薄膜膜响应的控制

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Metal oxide thin films show promising resistive switching properties, making them materials of reference for the development of memristive devices. TiO2 is probably one of the most studied materials and is being synthesized using various techniques, each of them having specific optimizable characteristics. In this paper, we report on an innovative approach by combining the sol–gel and the pulsed microplasma cluster source (PMCS) methods, exploiting the low temperature and low cost of the former process and precise control over nanocristallinity of the latter. We show that this approach overcomes the reported limitations that each technique shows in fabricating memristive devices when independently used. A side-by-side comparison of the TiO2 thin films produced by the PMCS, sol–gel, and PMCS/sol–gel hybrid methods (HM) demonstrates an improvement of the memristive properties and a reduction of the electrical shorts in the TiO2 based devices.
机译:金属氧化物薄膜显示有前途的电阻式开关性能,使其成为忆故器件开发的参考材料。 TiO2可能是最受研究的最多的材料之一,并且使用各种技术合成,每个技术具有特定的可优化特性。 本文通过组合溶胶 - 凝胶和脉冲显微簇源(PMC)方法,利用前工艺的低温和低成本并精确控制后者的纳米杆子内的低成本来报告一种创新方法。 我们表明,这种方法克服了每个技术在独立使用时在制造忆内装置中所显示的局限性的局限性。 由PMC,溶胶 - 凝胶和PMC /溶胶杂交方法(HM)产生的TiO2薄膜的并排比较显示了忆子性质的改善和基于TiO 2中的电气短路的降低 设备。

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