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DNA-templated synthesis of Pt nanoparticles on single-walled carbon nanotubes

机译:单壁碳纳米管上Pt纳米颗粒的DNA模板合成

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A series of electron microscopy characterizations demonstrate that single-stranded deoxyribonucleic acid (ssDNA) can bind to nanotube surfaces and disperse bundled single-walled carbon nanotubes (SWCNTs) into individual tubes. The ssDNA molecules on the nanotube surfaces demonstrate various morphologies, such as aggregated clusters and spiral wrapping around a nanotube with different pitches and spaces, indicating that the morphology of the SWCNT/DNA hybrids is not related solely to the base sequence of the ssDNA or the chirality or the diameter of the nanotubes. In addition to serving as a non-covalent dispersion agent, the ssDNA molecules bonded to the nanotube surface can provide addresses for localizing Pt(II) complexes along the nanotubes. The Pt nanoparticles obtained by a reduction of the Pt2+-DNA adducts are crystals with a size of <= 1-2 nm. These results expand our understanding of the interactions between ssDNA and SWCNTs and provide an efficient approach for positioning Pt and other metal particles, with uniform sizes and without aggregations, along the nanotube surfaces for applications in direct ethanol/methanol fuel cells and nanoscale electronics.
机译:一系列电子显微镜表征表明,单链脱氧核糖核酸(ssDNA)可以与纳米管表面结合并将成束的单壁碳纳米管(SWCNT)分散到各个管中。纳米管表面上的ssDNA分子表现出各种形态,例如聚集的簇和螺旋状包裹在具有不同间距和间距的纳米管周围,这表明SWCNT / DNA杂化物的形态并不仅仅与ssDNA的碱基序列或手性或纳米管的直径。除了用作非共价分散剂外,与纳米管表面结合的ssDNA分子还可提供地址,以沿纳米管定位Pt(II)配合物。通过还原Pt2 + -DNA加合物获得的Pt纳米颗粒是尺寸<= 1-2 nm的晶体。这些结果扩展了我们对ssDNA与SWCNT之间相互作用的理解,并提供了一种有效的方法来沿着纳米管表面定位大小均匀且无聚集的Pt和其他金属颗粒,用于直接乙醇/甲醇燃料电池和纳米级电子产品中。

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