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Metal Induced Intershell Coupling and Conductance Enhancement in Multiwalled Carbon Nanotubes

机译:金属诱导的三极碳纳米管中的Intershell联轴器和电导增强

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Using two different metal (platinum and Tungsten) depositions on the individual multiwalled carbon nanotubes bridging the spacing between two gold electrodes, we segregate the contributions of change in nanotubes inherent properties and contact-improvement in total conductance enhancement caused by metal deposition. In these experiments, the metals were deposited precisely at the desired locations on the tubes using gas injection system available in the Raithl50-Two direct write setup with 3 KeV electron beam induced deposition using organometallic precursor trimethyl- methylcyclopentadienyl-platinum (for Pt) and tungsten hexacarbonyl (for W). Typical increment up to 140% to 540% in conductance has been observed after Pt and W metal depositions on the MWNTs. The change in conductance is explained in terms of change in the density of states at Fermi level, due to charge transfer between metal atoms and nanotube as well as by radial stress created on the tube. HRTEM investigation of the metal deposited tubes suggests that metal atoms diffuse within the deep shells of the tube causing increased intershell interactions and hence improved electrical conductance.
机译:在各个多壁碳纳米管桥接两个金电极之间的间隔使用两种不同的金属(铂和钨)沉积,我们分离在纳米管的固有性质和造成的金属沉积总电导增强接触改进变化的贡献。在这些实验中,金属被精确地在管上的所希望的位置使用利用有机金属前体三甲基甲基环戊二烯基 - 铂(为Pt)的与3千电子伏的电子束诱导沉积的Raithl50-两个直写设置可用的气体注入系统和钨沉积六羰基(为W)。典型增量高达140%至540%的电导Pt和在多壁碳纳米管钨金属沉积后已经观察到。在电导的变化是在费米能级的状态的密度变化方面所解释的,由于在管中创建的径向应力的金属原子和纳米管之间以及电荷转移。金属沉积管的HRTEM调查表明,金属原子管的深壳内扩散引起增加intershell相互作用,并因此提高导电性。

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