论文标题

通过二维材料的固态Lifshitz-van der waals排斥

Solid-State Lifshitz-van der Waals Repulsion through Two-Dimensional Materials

论文作者

Tian, Tian, Vagli, Gianluca, Naef, Franzisca, Celebi, Kemal, Li, Yen-Ting, Chang, Shu-Wei, Krumeich, Frank, Santos, Elton J. G., Chiu, Yu-Cheng, Shih, Chih-Jen

论文摘要

在1960年代,Lifshitz等。预测量子波动可以将范德华(VDW)相互作用从吸引力变为排斥。但是,VDW排斥或其远程对应物(Casimir cosulsion)仅在液体中得到证明。在这里,我们表明,二维材料的原子厚度和双重性质使它们成为一种多功能的介质,可定制LifShitz-VDW相互作用。基于我们的理论预测,我们提出了VDW排斥的直接测量在2D材料表面上没有液体浸没,并证明了它们对外延特性的重大影响。例如,由于VDW抑制引起的金簇的超快扩散,金色的杂质在一张独立的石墨烯片上的金黄色杂质导致了超薄血小板的生长。纳米级接近的排斥力量的创造提供了诸如单分子驱动和原子装配等技术机会。

In the 1960s, Lifshitz et al. predicted that quantum fluctuations can change the van der Waals (vdW) interactions from attraction to repulsion. However, the vdW repulsion, or its long-range counterpart - the Casimir repulsion, has only been demonstrated in liquid. Here we show that the atomic thickness and birefringent nature of two-dimensional materials make them a versatile medium to tailor the Lifshitz-vdW interactions. Based on our theoretical prediction, we present direct force measurement of vdW repulsion on 2D material surfaces without liquid immersion and demonstrate their substantial influence on epitaxial properties. For example, heteroepitaxy of gold on a sheet of freestanding graphene leads to the growth of ultrathin platelets, owing to the vdW repulsion-induced ultrafast diffusion of gold clusters. The creation of repulsive force in nanoscale proximity offers technological opportunities such as single-molecule actuation and atomic assembly.

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