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Debye vs. Casimir: controlling the structure of charged nanoparticles deposited on a substrate dagger

机译:德拜与卡西米尔:控制的结构带电纳米颗粒沉积在衬底匕首

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Fine-tuning the interactions between particles can allow one to steer their collective behaviour and structure. A convenient way to achieve this is to use solvent criticality to control attraction, via critical Casimir forces, and to control repulsion via the Debye screening of electrostatic interactions. Herein, we develop a multiscale simulation framework and a method for controlled deposition of quantum dots to investigate how these interactions affect the structure of charged nanoparticles deposited on a substrate, altogether immersed in a binary liquid mixture intermixed with salt. We consider nanoparticles and substrates favouring the same component of the mixture and find that the critical Casimir interactions between the nanoparticles become drastically reduced at the substrate. In particular, the interactions can become a few k(B)T weaker and their decay length a few orders of magnitude smaller than in the bulk. At off-critical compositions, the decay length increases upon approaching criticality, as expected, but the interaction strength decreases. With molecular dynamics simulations and experiments, we reveal that the nanoparticles can self-assemble into crystalline clusters which form superstructures resembling cluster fluids and spinodal morphology. The simulations additionally predict the formation of fractal-like nanoparticle gels and bicontinuous phases. Our results demonstrate that charged nanoparticles in a salty binary liquid mixture provide exciting opportunities to study the formation of complex structures experimentally and theoretically, which may lead to applications in optoelectronics and photonics.
机译:微调粒子之间的相互作用允许一个集体行为,引导他们结构。使用溶剂临界控制的吸引力,通过关键卡西米尔力和控制通过德拜屏蔽的排斥静电相互作用。多尺度模拟框架和方法控制量子点的沉积这些相互作用如何影响进行调查带电纳米颗粒沉积在一个结构衬底,完全沉浸在一个二进制的液体用盐混合物混杂在一起。纳米颗粒和基质支持相同的组件的混合物和发现卡西米尔相互作用至关重要纳米粒子成为大幅减少衬底。成为几k (B) T弱及其衰减长度比在小几个数量级散装。在接近临界长度增加,预期,但作用强度降低。分子动力学模拟和实验中,我们表明,纳米颗粒可以自组装成水晶簇上层建筑形式类似于集群的液体和旋节线形态。此外预测的形成碎形纳米凝胶和双连续阶段。纳米粒子在一个咸的二元液体混合物为研究提供令人兴奋的机遇形成复杂的结构实验理论上,这可能会导致应用程序在光电子和光子。

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