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首页> 外文期刊>Nanotechnology >Molecular clusters as building blocks for nanoelectronics: the first demonstration of a cluster single-electron tunneling transistor at room temperature
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Molecular clusters as building blocks for nanoelectronics: the first demonstration of a cluster single-electron tunneling transistor at room temperature

机译:分子团簇作为纳米电子学的构建单元:室温下的团簇单电子隧穿晶体管的首次演示

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This work is the result of coherent effort of a multi-disciplinary research team working for a considerable number of years in the former USSR in the area of nanocluster molecular electronics. For the first time the successful demonstration of a single-electron tunneling transistor working reliably at room temperature and based on a single molecular metallorganic cluster is presented. A broad spectrum of different molecular clusters was investigated. Our group has developed a complete cycle of custom-designed molecular cluster manufacturing, deposition, characterization and modification of nanoelectronic devices based on a single molecular cluster. It was shown that the atomic and electronic structure of nanoclusters containing from 3 up to 23 metal atoms had no crucial importance for the transistor fabrication. At the same time extensive research into characteristics of nanoelectronic devices based on single molecular clusters and their tunneling properties is summarized.
机译:这项工作是在前苏联在纳米簇分子电子学领域中从事多年研究的多学科研究团队一致努力的结果。首次成功地展示了基于单分子金属有机簇的在室温下可靠工作的单电子隧穿晶体管的成功演示。研究了广泛的不同分子簇。我们的小组已开发出了一个完整的周期,可以根据单个分子簇对纳米电子器件进行定制设计的分子簇制造,沉积,表征和修饰。结果表明,包含3至23个金属原子的纳米团簇的原子和电子结构对晶体管的制造没有至关重要的意义。同时,总结了对基于单分子簇的纳米电子器件的特性及其隧穿特性的广泛研究。

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