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Magnetic and conductive magnetite nanowires by DNA-templating

机译:磁场和导电磁铁矿纳米线dna模板

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摘要

The synthesis of nanowires made of magnetite (Fe3O4) phase iron oxide was achieved using DNA as a template to direct formation of the metal oxide and confine its growth in two dimensions. This simple solution-based approach involves initial association of Fe~(2+) and Fe~(3+) to the DNA "template" molecules, and subsequent co-precipitation of the Fe3O4 material, upon increasing the solution pH, to give the final metal oxide nanowires. Analysis of the DNA-templated material, using a combination of FTIR, XRD, XPS, and Raman spectroscopy, confirmed the iron oxide formed to be the Fe3O4 crystal phase. Investigation of the structural character of the nanowires, carried out by AFM, revealed the metal oxide to form regular coatings of nanometre-scale thickness around the DNA templates. Statistical analysis showed the size distribution of the nanowires to follow a trimodal model, with the modal diameter values identified as 5-6 nm, 14—15 nm, and 23-24 nm. Additional scanning probe microscopy techniques (SCM, MFM) were also used to verify that the nanowire structures are electrically conducting and exhibit magnetic behaviour. Such.properties, coupled with the small dimensions of these materials, make them potentially good candidates for application in a host of future nanoscale device technologies.
机译:纳米线的合成的磁铁矿氧化铁(Fe3O4)阶段是通过使用DNA作为模板,直接形成的金属二维氧化并限制其增长。这个简单的方法为基础的解决方案涉及到初始协会Fe ~(2 +)和Fe ~ (3 +)DNA分子“模板”,随后共同沉淀的Fe3O4材料,增加溶液的pH值,给最后一个金属氧化物纳米线。dna模板材料,使用的组合红外光谱、XRD、XPS和拉曼光谱,证实氧化铁形成Fe3O4水晶阶段。的纳米线,由AFM透露金属氧化物形成常规涂料的在DNA nanometre-scale厚度模板。遵循一个分布的纳米线三峰模型,模态直径值确认为5 - 6纳米,14日至15日nm, 23 - 24日海里。额外的扫描探针显微技术(SCM MFM)也用于验证纳米线结构是导电的和展览磁行为。再加上小尺寸材料,使其潜在的优秀的候选人主机应用程序的未来的纳米级设备技术。

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