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Contact Resistance between Individual Single Walled Carbon Nanotubes and Metal Electrodes

机译:各个壁碳纳米管和金属电极之间的接触电阻

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We report that ohmic contact between individual single walled carbon nanotubes (SWNTs) and palladium (Pd) was formed by using the electric-current-induced joule heating in Pd electrode. The SWNTs are deposited onto Pd electrode patterned on SiO2/Si substrate, through which the electrical currents flow for microseconds. As a result, transport measurement exhibited a decrease in contact resistance between individual SWNT and Pd electrode from 3.3 MΩ to 176 kΩ at room temperature after joule heating induced by the electrical current. Atomic force microscopy also showed that a surface of Pd metal is smoothened in roughness after electrical current flowing, indicating metallic melting by joule heat. Therefore, we suggest the way to achieve a low contact resistance between SWNT and metal in field effect transistor at room temperature, instead of thermal annealing method at high temperature.
机译:我们认为通过使用Pd电极中的电流诱导的焦耳加热来形成各个单壁碳纳米管(SWNT)和钯(Pd)之间的欧姆接触。 SWNT沉积在SiO 2 / Si衬底上图案化的PD电极上,电流流动用于微秒。结果,传输测量在电流诱导的焦耳加热后,各个SWNT和PD电极之间的接触电阻从3.3mΩ到176kΩ之间的接触电阻降低。原子力显微镜也表明,电流在流动后的粗糙度下平滑了Pd金属的表面,表明焦耳热的金属熔化。因此,我们建议在室温下在现场效应晶体管中实现SWNT和金属之间的低接触电阻,而不是在高温下的热退火方法。

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