Choi Soo Ho, Kim Hyung-Jin, Song Bumsub, Kim Yong In, Han Gyeongtak, Nguyen Huong Thi Thanh, Ko Hayoung, Boandoh Stephen, Choi Ji Hoon, Oh Chang Seok, Cho Hyun Je, Jin Jeong Won, Won Yo Seob, Lee Byung Hoon, Yun Seok Joon, Shin Bong Gyu, Jeong Hu Young, Kim Young-Min, Han Young-Kyu, Lee Young Hee, Kim Soo Min, Kim Ki Kang
Center for Integrated Nanostructure Physics (CINAP), Institute for Basic Science (IBS), Sungkyunkwan University, Suwon, 16419, Republic of Korea.
Department of Energy and Materials Engineering, Dongguk University, Seoul, 04620, Republic of Korea.
Adv Mater. 2021 Apr;33(15):e2006601. doi: 10.1002/adma.202006601. Epub 2021 Mar 10.
Growth of 2D van der Waals layered single-crystal (SC) films is highly desired not only to manifest the intrinsic physical and chemical properties of materials, but also to enable the development of unprecedented devices for industrial applications. While wafer-scale SC hexagonal boron nitride film has been successfully grown, an ideal growth platform for diatomic transition metal dichalcogenide (TMdC) films has not been established to date. Here, the SC growth of TMdC monolayers on a centimeter scale via the atomic sawtooth gold surface as a universal growth template is reported. The atomic tooth-gullet surface is constructed by the one-step solidification of liquid gold, evidenced by transmission electron microscopy. The anisotropic adsorption energy of the TMdC cluster, confirmed by density-functional calculations, prevails at the periodic atomic-step edge to yield unidirectional epitaxial growth of triangular TMdC grains, eventually forming the SC film, regardless of the Miller indices. Growth using the atomic sawtooth gold surface as a universal growth template is demonstrated for several TMdC monolayer films, including WS , WSe , MoS , the MoSe /WSe heterostructure, and W Mo S alloys. This strategy provides a general avenue for the SC growth of diatomic van der Waals heterostructures on a wafer scale, to further facilitate the applications of TMdCs in post-silicon technology.
二维范德华层状单晶(SC)薄膜的生长备受期待,这不仅是为了展现材料的固有物理和化学性质,还能推动前所未有的工业应用设备的开发。尽管晶圆级的SC六方氮化硼薄膜已成功生长,但迄今为止,尚未建立起用于双原子过渡金属二硫属化物(TMdC)薄膜的理想生长平台。在此,报道了通过原子锯齿状金表面作为通用生长模板,在厘米尺度上生长TMdC单层的SC。原子齿槽表面由液态金的一步凝固构建而成,这通过透射电子显微镜得以证实。密度泛函计算证实,TMdC团簇的各向异性吸附能在周期性原子台阶边缘占主导,从而产生三角形TMdC晶粒的单向外延生长,最终形成SC薄膜,而与密勒指数无关。以原子锯齿状金表面作为通用生长模板,对包括WS₂、WSe₂、MoS₂、MoSe₂/WSe₂异质结构以及W₀.₅Mo₀.₅S₂合金在内的几种TMdC单层薄膜进行了生长演示。该策略为晶圆级双原子范德华异质结构的SC生长提供了一条通用途径,以进一步推动TMdC在硅基技术之后的应用。