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Defect-Free, Few-Atomic-Layer Thin ZnO Nanosheets with Superior Excitonic Properties for Optoelectronic Devices.
Singh, Mandeep; Zakria, Muhammad; Pannu, Amandeep Singh; Sonar, Prashant; Smith, Christopher; Mahasivam, Sanje; Ramanathan, Rajesh; Tran, Kevin; Tawfik, Sherif; Murdoch, Billy James; Mayes, Edwin Lawrence Harrop; Spencer, Michelle J S; Phillips, Matthew R; Bansal, Vipul; Ton-That, Cuong.
Afiliação
  • Singh M; Ian Potter NanoBioSensing Facility, NanoBiotechnology Research laboratory, School of Science, RMIT University, Melbourne, VIC 3000, Australia.
  • Zakria M; School of Mathematical and Physical Sciences, University of Technology Sydney, Ultimo, NSW 2007, Australia.
  • Pannu AS; School of Chemistry, Physics, and Mechanical Engineering, Queensland University of Technology, Brisbane, QLD 4000, Australia.
  • Sonar P; School of Chemistry, Physics, and Mechanical Engineering, Queensland University of Technology, Brisbane, QLD 4000, Australia.
  • Smith C; School of Mathematical and Physical Sciences, University of Technology Sydney, Ultimo, NSW 2007, Australia.
  • Mahasivam S; Ian Potter NanoBioSensing Facility, NanoBiotechnology Research laboratory, School of Science, RMIT University, Melbourne, VIC 3000, Australia.
  • Ramanathan R; Ian Potter NanoBioSensing Facility, NanoBiotechnology Research laboratory, School of Science, RMIT University, Melbourne, VIC 3000, Australia.
  • Tran K; ARC Centre of Excellence in Future Low-Energy Electronics Technologies, School of Science, RMIT University, Melbourne, VIC 3001, Australia.
  • Tawfik S; ARC Centre of Excellence in Exciton Science, School of Science, RMIT University, Melbourne, VIC 3000, Australia.
  • Murdoch BJ; RMIT Microscopy and Microanalysis Facility, STEM College, RMIT University, Melbourne, VIC 3001, Australia.
  • Mayes ELH; RMIT Microscopy and Microanalysis Facility, STEM College, RMIT University, Melbourne, VIC 3001, Australia.
  • Spencer MJS; ARC Centre of Excellence in Future Low-Energy Electronics Technologies, School of Science, RMIT University, Melbourne, VIC 3001, Australia.
  • Phillips MR; School of Mathematical and Physical Sciences, University of Technology Sydney, Ultimo, NSW 2007, Australia.
  • Bansal V; Ian Potter NanoBioSensing Facility, NanoBiotechnology Research laboratory, School of Science, RMIT University, Melbourne, VIC 3000, Australia.
  • Ton-That C; School of Mathematical and Physical Sciences, University of Technology Sydney, Ultimo, NSW 2007, Australia.
ACS Nano ; 18(26): 16947-16957, 2024 Jul 02.
Article em En | MEDLINE | ID: mdl-38870404
ABSTRACT
Two-dimensional (2D) wide bandgap materials are gaining significant interest for next-generation optoelectronic devices. However, fabricating electronic-grade 2D nanosheets from non-van der Waals (n-vdW) oxide semiconductors poses a great challenge due to their stronger interlayer coupling compared with vdW crystals. This strong coupling typically introduces defects during exfoliation, impairing the optoelectronic properties. Herein, we report the liquid-phase exfoliation of few-atomic-layer thin, defect-free, free-standing ZnO nanosheets. These micron-sized, ultrathin ZnO structures exhibit three different orientations aligned along both the polar c-plane as well as the nonpolar a- and m-planes. The superior crystalline quality of the ZnO nanosheets is validated through comprehensive characterization techniques. This result is supported by density functional theory (DFT) calculations, which reveals that the formation of oxygen vacancies is energetically less favorable in 2D ZnO and that the c-plane loses its polarity upon exfoliation. Unlike bulk ZnO, which is typically dominated by defect-induced emission, the exfoliated nanosheets exhibit a strong, ambient-stable excitonic UV emission. We further demonstrate the utility of solution processing of ZnO nanosheets by their hybrid integration with organic components to produce stable light emitting diodes (LEDs) for display applications.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article