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一种神经形态有机忆阻器件制备工艺优化研究
A Method for Preparing Neuromorphic Organic Memristive Device
【摘要】 忆阻器具有高集成密度、低功耗、神经形态计算等方面的优势,是实现存算一体和突触可塑性等神经拟态系统硬件的物理基础。虽然传统忆阻器具有较好的性能,但生物兼容性较差,而且在处理不当的情况下会对环境造成污染。基于此,提出一种基于α,β-COTh-Ph-OMeTAD有机物的忆阻器制备方案,该方案在熟知忆阻器机制原理的基础上,通过不断调整烘烤温度、溶液浓度、转速等实验变量,优化确定制造工艺,从而制备忆阻器。新制备的忆阻器经半导体综合参数分析仪测试,表明其具有电学性能稳定和生物兼容性好等优点。
【Abstract】 With the advantages of high integration density, low power consumption, neuromorphic computing, memristor is the physical basis for the realization of neuromorphic system hardware such as storage and computing integration and synaptic plasticity. Although traditional inorganic memristors have high performance, they have poor biocompatibility and can be harmful to environment without suitable operation. Based on this, this manuscript proposes a α,β-COTh-Ph-OMeTAD organic-based memristor preparation process. This method first introduces the principle of the memristor mechanism, and then optimizes the organic memristor by adjusting experimental variables such as baking temperature, solution concentration, and rotational speed, finally tests it with a semiconductor comprehensive parameter analyzer. Experiments show that the memristor prepared by the optimized process has stable electrical properties.
【Key words】 compute-in-memory; memristor; synaptic plasticity; processing methods;
- 【文献出处】 金华职业技术学院学报 ,Journal of Jinhua Polytechnic , 编辑部邮箱 ,2022年03期
- 【分类号】TN60
- 【下载频次】61