Foradori Sean M, Prussack Brett, Berson Arganthaël, Arnold Michael S
Department of Materials Science and Engineering, University of Wisconsin-Madison, 1509 University Avenue, Madison, Wisconsin 53706, United States.
Department of Mechanical Engineering, University of Wisconsin-Madison, 1513 University Avenue, Madison, Wisconsin 53706, United States.
ACS Nano. 2024 Mar 19;18(11):8259-8269. doi: 10.1021/acsnano.3c12243. Epub 2024 Mar 4.
High packing density aligned arrays of semiconducting carbon nanotubes (CNTs) are required for many electronics applications. Past work has shown that the accumulation of CNTs at a water-solvent interface can drive array self-assembly. Previously, the confining interface was a large-area, macroscopic feature. Here, we report on the CNT assembly on microscopic water features. Water microdroplets are formed on 10-100 μm wide hydrophilic stripes patterned on a substrate. Exposure to CNTs dispersed in solvent accumulates CNTs at the microdroplet-solvent interface, driving their alignment and deposition at the microdroplet-solvent-substrate contact line. Compared with macroscopic methods in which the contact line uncontrollably moves across the substrate as it is pulled out of the liquids, the hydrophilic patterns and microdroplets allow pinning of the contact line. As CNTs deposit, the contact line self-translates, allowing for dense CNT packing. We realize monolayer CNT arrays aligned within ±3.9° at density of 250 μm and field effect transistors with a high current density of 1.9 mA μm and transconductance of 1.2 mS μm at -0.6 V drain bias and 60 nm channel length.
许多电子应用都需要高堆积密度的半导体碳纳米管(CNT)排列阵列。过去的研究表明,碳纳米管在水-溶剂界面的聚集可以驱动阵列的自组装。此前,限制界面是一个大面积的宏观特征。在此,我们报道了碳纳米管在微观水特征上的组装情况。在基板上图案化的10-100μm宽的亲水性条纹上形成水微滴。将分散在溶剂中的碳纳米管暴露在微滴上,会使碳纳米管在微滴-溶剂界面处聚集,从而驱动它们在微滴-溶剂-基板接触线处排列和沉积。与宏观方法不同,在宏观方法中,当接触线从液体中抽出时会在基板上不可控地移动,而亲水性图案和微滴可以固定接触线。随着碳纳米管的沉积,接触线会自行平移,从而实现碳纳米管的密集堆积。我们实现了密度为250μm且排列在±3.9°范围内的单层碳纳米管阵列,以及在漏极偏压为-0.6V和沟道长度为60nm时具有1.9mAμm的高电流密度和1.2mSμm跨导的场效应晶体管。