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DNA-grafted-polymer mediated self-assembly of micro components

机译:DNA接枝聚合物介导的微组件自组装

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Systematic experiments of DNA mediated sequential and selective self-assembly of 5 × 5 (μm2) silicon micro-components to a substrate using DNA-grafted-polymers as flexible binding spacers were carried out for the first time. The surfaces of the micro-components and sites on the substrate were modified by the same 30-mers single-stranded-DNA (ssDNA). The complementary ssDNA was grafted to a polymer to form DNA-grafted-polymer. Four types of DNA-grafted-polymer with two different ssDNA hybridization lengths and two different ssDNA fractions were prepared. From the measured time dependence of the number of self-assembled micro-components on the sites, the DNA-grafted-polymer technique proved to greatly enhance the assembly yield and time compared to direct self-assembly between micro-components and sites.
机译:首次系统性地进行了DNA介导的5×5(μm2)硅微组件到衬底的顺序和选择性自组装的系统实验,该过程使用DNA接枝的聚合物作为柔性结合间隔子。通过相同的30聚体单链DNA(ssDNA)修饰微组件的表面和底物上的位点。互补的ssDNA被接枝到聚合物上以形成DNA接枝的聚合物。制备了四种具有两种不同的ssDNA杂交长度和两种不同的ssDNA片段的DNA接枝聚合物。根据测得的位置上自组装微组件数量的时间依赖性,与微组件和站点之间的直接自组装相比,DNA接枝聚合物技术被证明可以大大提高组装产量和时间。

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