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A study of the memory effects of metallic core-metal oxide shell nanocrystals by a micelle dipping technique

机译:用胶束浸渍技术研究金属核-金属氧化物壳纳米晶体的记忆效应

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With a simple and conformal metal nanocrystal dipping of synthesized micelles, nonvolatile memory characteristics originating from a metallic cobalt (Co) core nanocrystal (NC) surrounded by a Co-oxide shell are investigated in this study. From transmission electron microscopy (TEM) and x-ray photoelectron spectroscopy (XPS), it was confirmed that Co-oxide was made by oxygen plasma for polymer oxidation and that metallic Co wrapped with a Co-oxide shell was made by hydrogen annealing in order to reduce the Co-oxide. Energy band diagrams considering the extent of the coexistent metallic Co/Co-oxide were also analyzed in terms of how they correspond to each program/erase/retention case. These cases were verified by electrically measured data. These results can provide a guideline for the design and optimization of metal NC embedded memory.
机译:通过对合成的胶束进行简单而共形的金属纳米晶体浸渍,在本研究中研究了源自被钴氧化物壳包围的金属钴(Co)核纳米晶体(NC)的非易失性存储特性。从透射电子显微镜(TEM)和X射线光电子能谱(XPS)可以证实,通过氧等离子体制备了Co-氧化物用于聚合物氧化,并且通过氢气退火依次包裹了包裹有Co-氧化物壳的金属Co。减少共氧化物。考虑到共存的金属Co / Co-氧化物的程度的能带图也根据它们与每种编程/擦除/保留情况的对应方式进行了分析。这些情况已通过电测量数据验证。这些结果可以为金属NC嵌入式存储器的设计和优化提供指导。

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