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Electrochemical gating of individual single-wall carbon nanotubes observed by electron transport measurements and resonant Raman spectroscopy

机译:通过电子传输测量和共振拉曼光谱观察单个单壁碳纳米管的电化学门控

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摘要

Metal electrodes patterned lithographically on top of individual single-wall carbon nanotubes are used to gate the nanotubes with respect to a reference electrode in an electrolyte drop. The gating is found to have a dramatic effect on both the Raman spectra and electron transport of the nanotubes. Current through metallic nanotubes is found to increase sharply with electrochemical gate voltage, indicating that the Fermi energy reaches valence and conduction band van Hove singularities. Using resonant confocal micro-Raman spectroscopy, we observe a 9 cm~(-1) upshift of the tangential mode vibrational frequency, as well as a 90% decrease in intensity, by applying 1 V between an individual nanotube and a silver reference electrode in a dilute H_(2)SO_(4) solution. The mechanisms for the shifts of the Raman mode frequencies are discussed on the basis of changes in the lattice constant of heavily charged nanotubes.
机译:在各个单壁碳纳米管的顶部进行光刻构图的金属电极,用于相对于电解液滴中的参考电极对纳米管进行选通。发现门控对纳米管的拉曼光谱和电子传输都具有显着影响。发现流经金属纳米管的电流随电化学栅极电压急剧增加,这表明费米能达到化合价和导带范霍夫奇异性。使用共振共聚焦显微拉曼光谱法,我们观察到切向模式振动频率有9 cm〜(-1)上移,并且通过在单个纳米管和银参比电极之间施加1 V电压,强度降低了90%。稀H_(2)SO_(4)解决方案。拉曼模式频率的位移的机制是基于重电荷纳米管的晶格常数的变化进行讨论的。

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