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首页> 外文期刊>The European physical journal, E. Soft matter >Phase behaviour in complementary DNA-coated gold nanoparticles and fd-viruses mixtures: a numerical study
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Phase behaviour in complementary DNA-coated gold nanoparticles and fd-viruses mixtures: a numerical study

机译:互补DNA涂层金纳米粒子和FD-病毒混合物中的相行为:数值研究

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摘要

A new gel-forming colloidal system based on a binary mixture of fd-viruses and gold nanoparticles functionalized with complementary DNA single strands has been recently introduced. Upon quenching below the DNA melt temperature, such a system results in a highly porous gel state, that may be developed in a new functional material of tunable porosity. In order to shed light on the gelation mechanism, we introduce a model closely mimicking the experimental one and we explore via Monte Carlo simulations its equilibrium phase diagram. Specifically, we model the system as a binary mixture of hard rods and hard spheres mutually interacting via a short-range square-well attractive potential. In the experimental conditions, we find evidence of a phase separation occurring either via nucleation-and-growth or via spinodal decomposition. The spinodal decomposition leads to the formation of small clusters of bonded rods and spheres whose further diffusion and aggregation leads to the formation of a percolating network in the system. Our results are consistent with the hypothesis that the mixture of DNA-coated fd-viruses and gold nanoparticles undergoes a non-equilibrium gelation via an arrested spinodal decomposition mechanism.
机译:最近介绍了一种基于FD病毒和用互补的DNA单链官能团的FD病毒和金纳米颗粒的二元混合物的新型凝胶形成胶体系统。在低于DNA熔体温度下淬火时,这种系统导致高度多孔的凝胶状态,其可以以可调谐孔隙率的新功能材料开发。为了在凝胶化机制上揭示光线,我们介绍了一个密切模仿实验的模型,我们通过Monte Carlo模拟探索其平衡相图。具体地,我们将该系统模拟作为硬杆和硬球的二元混合物通过短距离方形孔的潜力相互交互。在实验条件下,我们发现通过成核和生长或通过旋光性分解来发现相分离的证据。旋光膜分解导致形成小簇的粘结杆和球体,其进一步扩散和聚集导致系统中的渗透网络形成。我们的研究结果与DNA涂覆的FD-病毒和金纳米颗粒的混合物通过被捕的旋光性分解机制经历非平衡凝胶化的假设一致。

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