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Intercalation-Induced Disintegrated Layer-By-Layer Growth of Ultrathin Ternary Mo(Te1-xSx)2 Plates.
Yang, Yuzhe; Shang, Jing; Gao, Han; Sun, Qiang; Kou, Liangzhi; Chen, Zhi-Gang; Zou, Jin.
Afiliação
  • Yang Y; School of Mechanical and Mining Engineering, The University of Queensland, St. Lucia, Queensland 4072, Australia.
  • Shang J; School of Chemistry, Physics and Mechanical Engineering Faculty, Queensland University of Technology, Gardens Point Campus, Brisbane, Queensland 4001, Australia.
  • Gao H; School of Mechanical and Mining Engineering, The University of Queensland, St. Lucia, Queensland 4072, Australia.
  • Sun Q; School of Mechanical and Mining Engineering, The University of Queensland, St. Lucia, Queensland 4072, Australia.
  • Kou L; School of Chemistry, Physics and Mechanical Engineering Faculty, Queensland University of Technology, Gardens Point Campus, Brisbane, Queensland 4001, Australia.
  • Chen ZG; School of Mechanical and Mining Engineering, The University of Queensland, St. Lucia, Queensland 4072, Australia.
  • Zou J; Centre for Future Materials, University of Southern Queensland, Springfield Central, Queensland 4300, Australia.
ACS Appl Mater Interfaces ; 12(27): 30980-30989, 2020 Jul 08.
Article em En | MEDLINE | ID: mdl-32515585
Nanometer-thick transition-metal dichalcogenides (TMDs) have attracted increasing research interest because of their exotic physical properties, but their high-yield and large-scale synthesis remains a challenge for their practical device applications. In this study, we realize the high-yield synthesis of nanometer-thick single-crystalline Mo(Te1-xSx)2 plates by a facile chemical vapor deposition method. Adding S powders in the precursors can result in the products varying from well-faceted MoTe2 hexagonal plates to irregular Mo(Te1-xSx)2 plates with randomly stacked nanometer-thick layer steps. Moreover, their lateral dimension increases from several µm for binary MoTe2 to several tens of µm for ternary Mo(Te1-xSx)2. More interestingly, such irregular Mo(Te1-xSx)2 plates can form few layers by ultrasonic exfoliation. Our detailed electron microscopy analyses show that three kinds of S forms influence the ternary growth. In particular, elemental S8 intercalations play an important role in the growth and exfoliation of ultrathin Mo(Te1-xSx)2 plates. This study enriches the fundamental understanding of zero-valent intercalation in TMDs and provides a new insight into secure high-yield nanometer-thick TMDs, which is critical for practical applications.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Revista: ACS Appl Mater Interfaces Assunto da revista: BIOTECNOLOGIA / ENGENHARIA BIOMEDICA Ano de publicação: 2020 Tipo de documento: Article País de afiliação: Austrália

Texto completo: 1 Base de dados: MEDLINE Idioma: En Revista: ACS Appl Mater Interfaces Assunto da revista: BIOTECNOLOGIA / ENGENHARIA BIOMEDICA Ano de publicação: 2020 Tipo de documento: Article País de afiliação: Austrália