论文标题

悬浮的2D材料上3D金属纳米群岛的准瓦恩德华的机理

Mechanisms of quasi-van der Waals epitaxy of 3D metallic nanoislands on suspended 2D materials

论文作者

Reidy, Kate, Thomsen, Joachim Dahl, Lee, Hae Yeon, Zarubin, Vera, Yu, Yang, Wang, Baoming, Pham, Thang, Periwal, Priyanka, Ross, Frances M.

论文摘要

在二维(2D)材料和3D金属之间的界面上了解结构对于设计新颖的2D/3D异质结构和改善许多2D材料设备的性能至关重要。在这里,我们在几种材料系统中量化并讨论了2D/3D接口结构和3D形态。我们首先使用对平衡岛形状的测量来确定2D/AU界面能量的值并检查表面重建,化学身份,化学身份以及在生长结构上的缺陷。然后,我们将具有技术相关的金属Ti和NB沉积在动力学因素而非热力学因素控制生长的条件下。我们描述了从树突状到刻面岛的过渡,这是生长温度的函数,并讨论了这些材料系统中岛形状的因素。最后,我们表明,悬浮的2D材料可以制造一种新型的3D/2D/3D异质结构并讨论生长机制。我们建议,新兴的纳米版将利用具有良好特征界面和形态的2D/3D异质结构的多功能制造。

Understanding structure at the interface between two-dimensional (2D) materials and 3D metals is crucial for designing novel 2D/3D heterostructures and improving the performance of many 2D material devices. Here, we quantify and discuss the 2D/3D interface structure and the 3D morphology in several materials systems. We first deposit facetted Au nanoislands on graphene and transition metal dichalcogenides, using measurements of the equilibrium island shape to determine values for the 2D/Au interface energies and examining the role of surface reconstructions, chemical identity, and defects on the grown structures. We then deposit the technologically relevant metals Ti and Nb under conditions where kinetic rather than thermodynamic factors govern growth. We describe a transition from dendritic to facetted islands as a function of growth temperature and discuss the factors determining island shape in these materials systems. Finally, we show that suspended 2D materials enable the fabrication of a novel type of 3D/2D/3D heterostructure and discuss the growth mechanism. We suggest that emerging nanodevices will utilize such versatile fabrication of 2D/3D heterostructures with well-characterized interfaces and morphologies.

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