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Freestanding Borophene and Its Hybrids.
Ranjan, Pranay; Sahu, Tumesh Kumar; Bhushan, Rebti; Yamijala, Sharma Srkc; Late, Dattatray J; Kumar, Prashant; Vinu, Ajayan.
Afiliación
  • Ranjan P; Department of Physics, Indian Institute of Technology Patna, Bihta, Bihar, 801106, India.
  • Sahu TK; Department of Physics, Indian Institute of Technology Patna, Bihta, Bihar, 801106, India.
  • Bhushan R; Department of Physics, Indian Institute of Technology Patna, Bihta, Bihar, 801106, India.
  • Yamijala SS; Department of Chemistry, University of Rochester, Rochester, NY, 14620, USA.
  • Late DJ; National Chemical Laboratory, Pune, 411008, India.
  • Kumar P; Department of Physics, Indian Institute of Technology Patna, Bihta, Bihar, 801106, India.
  • Vinu A; Birck Nanotechnology Centre, Purdue University, West Lafayette, IN, 47907, USA.
Adv Mater ; 31(27): e1900353, 2019 Jul.
Article en En | MEDLINE | ID: mdl-31044470
ABSTRACT
Borophene, an elemental metallic Dirac material is predicted to have unprecedented mechanical and electronic character. Need of substrate and ultrahigh vacuum conditions for deposition of borophene restricts its large-scale applications and significantly hampers the advancement of research on borophene. Herein, a facile and large-scale synthesis of freestanding atomic sheets of borophene through a novel liquid-phase exfoliation and the reduction of borophene oxide is demonstrated. Electron microscopy confirms the presence of ß12 , X3 , and their intermediate phases of borophene; X-ray photoelectron spectroscopy, and scanning tunneling microscopy, corroborated with density functional theory band structure calculations, validate the phase purity and the metallic nature. Borophene with excellent anchoring capabilities is used for sensing of light, gas, molecules, and strain. Hybrids of borophene as well as that of reduced borophene oxide with other 2D materials are synthesized, and the predicted superior performance in energy storage is explored. The specific capacity of borophene oxide is observed to be ≈4941 mAh g-1 , which significantly exceeds that of existing 2D materials and their hybrids. These freestanding borophene materials and their hybrids will create a huge breakthrough in the field of 2D materials and could help to develop future generations of devices and emerging applications.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Adv Mater Asunto de la revista: BIOFISICA / QUIMICA Año: 2019 Tipo del documento: Article País de afiliación: India

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Adv Mater Asunto de la revista: BIOFISICA / QUIMICA Año: 2019 Tipo del documento: Article País de afiliación: India
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