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Programming the assembly of gold nanoparticles on graphene oxide sheets using DNA

机译:使用DNA对金纳米颗粒在氧化石墨烯板上的组装程序进行编程

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摘要

We present a new method to program the covalent binding of gold nanoparticles onto graphene oxide sheets. The binding selectivity is driven by the synergy of chemically modified oligonucleotides, grafted onto the surfaces of nanoparticles and graphene oxide. In the presence of a templating complementary DNA strand, nanoparticles are brought near the surface of the graphene oxide. Once in close proximity, the DNA strands are ligated to create a permanent link between the nanoparticles and graphene oxide, ensuring stability of the system even during DNA melting conditions. Due to the selectivity and specificity of DNA, a second layer of gold nanoparticles of different size can be grafted on the top of the first layer of particles. The simplicity of this new method allows for its universal applicability when the formation of highly programmable, covalently linked hybrid nanoparticle–graphene oxide structures is a necessity.
机译:我们提出了一种编程金纳米颗粒到氧化石墨烯板上的共价结合的新方法。结合选择性是由化学修饰的寡核苷酸的协同作用驱动的,嫁接在纳米颗粒和氧化石墨烯的表面。在模板互补DNA链的存在下,纳米颗粒被带到氧化石墨烯的表面附近。一旦紧密接近,就将DNA链连接起来,在纳米颗粒和氧化石墨烯之间建立永久连接,即使在DNA融化条件下也能确保系统的稳定性。由于DNA的选择性和特异性,可以将大小不同的第二层金纳米颗粒接枝到第一层颗粒的顶部。当需要形成高度可编程的,共价连接的杂化纳米粒子-氧化石墨烯结构时,这种新方法的简单性使其具有通用性。

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