DNA折纸
材料科学
胶体金
纳米线
纳米技术
制作
纳米颗粒
平版印刷术
模板
抵抗
纳米尺度
电子束光刻
电极
纳米结构
光电子学
化学
医学
病理
图层(电子)
物理化学
替代医学
作者
Anthony C. Pearson,Jianfei Liu,Elisabeth Pound,Bibek Uprety,Adam T. Woolley,Robert C. Davis,John N. Harb
摘要
DNA origami is a promising tool for use as a template in the design and fabrication of nanoscale structures. The ability to engineer selected staple strands on a DNA origami structure provides a high density of addressable locations across the structure. Here we report a method using site-specific attachment of gold nanoparticles to modified staple strands and subsequent metallization to fabricate conductive wires from DNA origami templates. We have modified DNA origami structures by lengthening each staple strand in select regions with a 10-base nucleotide sequence and have attached DNA-modified gold nanoparticles to the lengthened staple strands via complementary base-pairing. The high density of extended staple strands allowed the gold nanoparticles to pack tightly in the modified regions of the DNA origami, where the measured median gap size between neighboring particles was 4.1 nm. Gold metallization processes were optimized so that the attached gold nanoparticles grew until gaps between particles were filled and uniform continuous nanowires were formed. Finally, electron beam lithography was used to pattern electrodes in order to measure the electrical conductivity of metallized DNA origami, which showed an average resistance of 2.4 kΩ per metallized structure.
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