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Nanoionics: New Materials and Supercapacitors

机译:纳米离子:新材料和超级电容器

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摘要

The review presents the results of investigations of solid state nanomaterials and nanosystems with fast ion transport developed at the IMT RAS. The concept of a new branch of science, "nanoionics" , is pro-posed. New optically active physicochemical nanosystems Ag(Cu)I—M, with record high concentrations of rare-earth and transition metals (M) were discovered. The development of a new class of impulse high capac-ity sub-voltage devices with coherent heterojunctions, "nanoionic supercapacitors", was initiated within the framework of a new direction, "nanoionics of advanced superionic conductors". A search for areas of nanoionic device application was made with regard to the development of deep-sub-voltage nanoelectronics and related technologies in the nearest 5-10 years and the creation of high-density digital logics and memory, operating in hybrid nanostructures due to the combination of electron quantum transport and classical ion movement (nanoelionics) in the long future prospect.
机译:该综述介绍了在IMT RAS上开发的具有快速离子迁移的固态纳米材料和纳米系统的研究结果。提出了一个新的科学分支“ nanoionics”的概念。发现了具有创纪录的高浓度稀土和过渡金属(M)的新型光学活性物理化学纳米系统Ag(Cu)I-M。在一个新的方向“先进的超离子导体的纳米离子”的框架内,开始了新型的具有相干异质结的脉冲高容量亚电压器件的开发,即“纳米离子超级电容器”。针对纳米离子器件的应用领域进行了研究,以寻求在近5-10年内深亚电压纳米电子学和相关技术的发展以及由于混合纳米结构而在混合纳米结构中运行的高密度数字逻辑和存储器的创建。电子量子传输和经典离子运动(纳米电子学)的结合在很长的未来前景中。

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