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Patterned forest-assembly of single-wall carbon nanotubes on gold using a non-thiol functionalization technique

机译:使用非硫醇官能化技术在金上的单壁碳纳米管的图案化森林组装

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摘要

An approach for non-thiol functionalization of single-wall carbon nanotubes (SWNTs) on gold was demonstrated via an Fe3+-assisted self-assembly technique. Upon immersion of gold into a pH 2.2 aqueous FeCl3 solution, FeCl3 oxidized the gold surface, due to the aqua regia effect, resulting in the formation of films of FeO(OH)-FeOCl crystallites. Subsequent immersion into a SWNT dimethylformamide (DMF) dispersion led to needle-like forest assemblies of SWNTs based on metal-assisted chelation and electrostatic interactions. Two approaches for surface patterning of these SWNT forests were investigated based on shadow-mask evaporation and conventional photolithographic lift-off to localize FeO(OH)-FeOCl/Au composite pads on Si substrates. The strong adhesion of Fe3+ ions onto silica surfaces can be partially overcome by repeated washes in aqueous HCl solution (pH, 4), and completely overcome by photoresist-assisted protection which prevents unwanted Fe3+ ions from complexing with the unexposed silica surfaces. Such patterned Fe3+ -functionalized Au structures provided the basis for the site-specific forest-assembly of SWNTs as characterized by atomic force microscopy (AFM) and resonance Raman spectroscopy.
机译:通过Fe3 +辅助自组装技术,证明了一种在金上进行单壁碳纳米管(SWNTs)非硫醇官能化的方法。将金浸入pH 2.2的FeCl3水溶液中后,由于王水效应,FeCl3氧化了金表面,从而形成了FeO(OH)-FeOCl微晶膜。随后浸入SWNT二甲基甲酰胺(DMF)分散液中,导致基于金属辅助的螯合和静电相互作用的SWNT的针状森林组件。基于荫罩蒸发和常规光刻剥离技术,研究了两种SWNT森林表面构图的方法,以将FeO(OH)-FeOCl / Au复合垫定位在Si衬底上。 Fe3 +离子在二氧化硅表面上的强粘附力可以通过在HCl水溶液(pH,4)中反复洗涤来部分克服,而通过光致抗蚀剂辅助的保护作用则可以完全克服,防止不必要的Fe3 +离子与未暴露的二氧化硅表面络合。通过原子力显微镜(AFM)和共振拉曼光谱学表征,这种图案化的Fe 3+-官能化的Au结构为SWNT的特定位置的森林组装提供了基础。

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