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Chemically modified diamondoids as biosensors for DNA

机译:化学改良菱形的作为生物传感器

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摘要

Understanding the interaction of biological molecules with materials is essential in view of the novel potential applications arising when these two are combined. To this end, we investigate the interaction of DNA with diamondoids, a broad family of tiny hydrogen-terminated diamond clusters with high technological potential. We model this interaction through quantum-mechanical computer simulations and focus on the hydrogen bonding possibilities of the different DNA nucleobases to the lower amine-modified diamondoids with respect to their relative distance and orientation. Our aim is to promote the binding between these two units, and probe this through the association energy, the electronic structure of the nucleobase-diamondoid system, and the specific role of their frontier orbitals. We discuss the relevance of our results in view of biosensing applications and specifically nanopore sequencing of DNA.
机译:了解生物之间的相互作用分子材料是至关重要的这部小说时产生的潜在的应用这两个组合。研究DNA的相互作用菱形的,广泛的小的家庭hydrogen-terminated钻石具有高的集群技术的潜力。通过量子力学的计算机进行交互模拟和关注氢键不同的DNA碱基的可能性较低的amine-modified菱形的尊重他们的相对距离和方向。目的是促进这两个之间的绑定通过协会单位,调查能源,电子结构nucleobase-diamondoid系统,具体作用的前沿轨道。鉴于若相关性的结果应用程序,特别是纳米孔测序DNA的。

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