4.6 Article

Bottom-up synthesis of vertically oriented two-dimensional materials

期刊

2D MATERIALS
卷 3, 期 4, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/2053-1583/3/4/041003

关键词

MoS2; two-dimensional materials; transition-metal dichalcogenide; vertical; synthesis; transmission electron microscopy; modeling

资金

  1. Direct For Mathematical & Physical Scien
  2. Division Of Materials Research [1453924] Funding Source: National Science Foundation

向作者/读者索取更多资源

Understanding nucleation and growth of two-dimensional (2D) and layered materials is a challenging topic due to the complex van der Waals interactions between layers and substrate. The morphology of 2D materials is known vary depending on experimental conditions. For the case of MoS2, the morphology has been shown to vary from rounded (molybdenum rich) domains to equilateral triangular (sulfur rich) domains. These different morphologies can result in drastically different properties, which can be exploited for applications in catalytic reactions, digital electronics, optoelectronics, and energy storage. Powder vaporization (PV) synthesis of molybdenum disulfide (MoS2) can yield vertical domains, however, these domains are often ignored when the morphology evolution of MoS2 is discussed, thereby completely omitting a major part of the impact of the Mo:S ratio to the growth mode of MoS2 during PV. Combining experimental and numerical simulation methods, we reveal a vertical-to-horizontal growth mode transition for MoS2 that occurs in the presence of a molybdenum oxide partial pressure gradient. Transmission electron microscopy reveals that the growth of vertical MoS2 results from initial seeding of single crystalline molybdenum dioxide, followed by sulfurization from the substrate upward to form vertically oriented MoS2 domains.

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