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首页> 外文期刊>Bulletin of the Chemical Society of Japan >Single-Molecule Analysis Methods Using Nanogap Electrodes and Their Application to DNA Sequencing Technologies
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Single-Molecule Analysis Methods Using Nanogap Electrodes and Their Application to DNA Sequencing Technologies

机译:使用纳米隙电极的单分子分析方法及其在DNA测序技术中的应用

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Single-molecule analysis methods facilitate the investigation of the properties of single-molecule junctions (SMJs), in which single molecules are connected between a pair of nanoelectrodes that use nanogap electrodes having a spacing of less than several nanometers. Various methods have been developed to investigate numerous useful parameters for SMJs; for example, the number of molecules connected between a pair of nanoelectrodes can be determined, the types and structures of single molecules can be revealed, localized temperatures within SMJs can be evaluated, and the Seebeck coefficient and the bond strength between single molecules and electrodes can be ascertained. Single-molecule analysis methods have also been used to analyze biopolymers in solutions, and this has resulted in single-molecule sequencing technologies being developed that can determine sequences of base molecules in DNA and RNA along with sequences of amino acids in peptides. Single-molecule analysis methods are expected to develop into digital analysis techniques that can be used to investigate the physical and chemical properties of molecules at single-molecule resolutions.
机译:单分子分析方法有助于调查单分子结(SMJ)的性质,其中单分子连接在一对纳米电极之间,该纳米电极在使用小于几纳米的纳米盖电极之间。已经开发出各种方法来研究SMJS的许多有用参数;例如,可以确定连接在一对纳米电极之间的分子的数量,可以揭示单分子的类型和结构,可以评估SMJS内的局部温度,并且塞贝克系数和单分子和电极之间的粘合强度可以确定。单分子分析方法也已用于分析溶液中的生物聚合物,这导致了单分子测序技术正在开发,其可以确定DNA和RNA中的基本分子序列以及肽中的氨基酸序列。预计单分子分析方法将开发成数字分析技术,可用于研究单分子分子以分子的物理和化学性质。

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