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首页> 外文期刊>RSC Advances >Optimizing gold nanoparticle seeding density on DNA origami
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Optimizing gold nanoparticle seeding density on DNA origami

机译:在DNA折纸上优化金纳米粒子的接种密度

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DNA origami is a valuable technique in arranging nanoparticles into various geometries with a similar to 100 nm footprint, high resolution, and experimental simplicity. Aligned nanoparticles, in addition to being used for photonics, can also be utilized to create thin metal wires with intricate and asymmetric junctions. Many factors affect the yield and density of nanoparticles attached to DNA origami structures, including the length and number of attachment sequences, the reaction ratio of nanoparticles to DNA origami, the hybridization temperature, and age of the solutions. This work investigates the alignment of closely packed 5 nm gold nanoparticles along thin DNA origami structures. Several reaction conditions, including hybridization time, magnesium ion concentration, ratio of nanoparticles to DNA origami, and age of the nanoparticle solution, were explored to optimize nanoparticle attachment density and spacing. Optimum ranges of conditions were identified, yielding new insights into high-density nanoparticle attachment to thin DNA origami structures, with potential for application in nanowire and nanoelectronics construction.
机译:DNA折纸是将纳米粒子排列成具有100 nm占地面积,高分辨率和实验简单性的各种几何形状的一种有价值的技术。对齐的纳米粒子,除了用于光子学之外,还可以用于创建具有复杂和不对称结的细金属线。许多因素会影响附着在DNA折纸结构上的纳米粒子的产量和密度,包括附着序列的长度和数量,纳米粒子与DNA折纸的反应比率,杂交温度以及溶液的使用期限。这项工作研究了紧密堆积的5 nm金纳米颗粒沿薄DNA折纸结构的排列方式。探索了几种反应条件,包括杂交时间,镁离子浓度,纳米粒子与DNA折纸的比例以及纳米粒子溶液的年龄,以优化纳米粒子的附着密度和间距。确定了最佳条件范围,从而对高密度纳米颗粒与薄DNA折纸结构的附着产生了新的见解,并有望应用于纳米线和纳米电子构造中。

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