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Growth and characterization of horizontally suspended CNTs across TiN electrode gaps

机译:TiN电极间隙中水平悬浮的CNT的生长和表征

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A technique is proposed to grow horizontal carbon nanotubes (CNTs) bridging metal electrodes and to assess their electrical properties. A test structure was utilized that allows for selective electrochemical sidewall catalyst placement. The selectivity of the technique is based on the connection of the desired metal electrodes to the silicon substrate where the potential for electrochemical deposition was applied. Control over the Ni catalyst size (15–30 nm) and density (up to 3 × 10~(11) particles cm ~(? 2)) is demonstrated. Horizontal CNTs with controlled diameter and density were obtained by CVD growth perpendicular to the sidewalls of patterned TiN electrode structures. Electrode gaps with spacings from 200 nm up to 5 μm could be bridged by both direct CNT–electrode contact and CNT–CNT entanglement. The TiN–CNT–TiN and TiN–CNT–CNT–TiN bridges were electrically characterized without any further post-growth contacting. Resistance values as low as 40 Ω were measured for the smallest gap spacing and depended mainly on the number and configuration of the CNT bridges. The proposed method could be implemented for CNT-based horizontal interconnections and be a route to make different nanoelectronic devices such as chemical and electromechanical sensors.
机译:提出了一种生长桥接金属电极的水平碳纳米管(CNT)并评估其电性能的技术。利用测试结构,其允许选择性地放置电化学侧壁催化剂。该技术的选择性基于所需金属电极与硅基板的连接,在硅基板上施加了电化学沉积的电势。证明了对Ni催化剂尺寸(15–30 nm)和密度(最大3×10〜(11)粒子cm〜(?2))的控制。通过垂直于图案化的TiN电极结构的侧壁的CVD生长获得具有受控直径和密度的水平CNT。间距为200 nm至5μm的电极间隙可通过直接CNT-电极接触和CNT-CNT缠结来弥补。对TiN–CNT–TiN和TiN–CNT–CNT–TiN桥进行了电学表征,没有进一步的生长后接触。对于最小的间隙间距,测量的电阻值低至40Ω,并且主要取决于CNT桥的数量和配置。所提出的方法可以用于基于CNT的水平互连,并且可以成为制造不同的纳米电子器件(例如化学传感器和机电传感器)的途径。

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