Atomic sawtooth-like metal films for vdW-layered single-crystal growth

Author:

Ko HayoungORCID,Choi Soo Ho,Park YunjaeORCID,Lee SeungjinORCID,Oh Chang Seok,Kim Sung Youb,Lee Young HeeORCID,Kim Soo Min,Ding FengORCID,Kim Ki KangORCID

Abstract

AbstractAtomic sawtooth surfaces have emerged as a versatile platform for growth of single-crystal van der Waals layered materials. However, the mechanism governing the formation of single-crystal atomic sawtooth metal (copper or gold) films on hard substrates (tungsten or molybdenum) remains a puzzle. In this study, we aim to elucidate the formation mechanism of atomic sawtooth metal films during melting–solidification process. Utilizing molecular dynamics, we unveil that the solidification of the liquid copper initiates at a high-index tungsten facet with higher interfacial energy. Subsequent tungsten facets follow energetically favourable pathways of forming single-crystal atomic sawtooth copper film during the solidification process near melting temperature. Formation of atomic sawtooth copper film is guaranteed with a film thickness exceeding the grain size of polycrystalline tungsten substrate. We further demonstrate the successful growth of centimeter-scale single-crystal monolayer hexagonal boron nitride films on atomic sawtooth copper films and explore their potential as efficient oxygen barrier.

Funder

Institute for Basic Science

National Research Foundation of Korea

National Natural Science Foundation of China

Publisher

Springer Science and Business Media LLC

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