4.8 Article

H2O-Etchant-Promoted Synthesis of High-Quality Graphene on Glass and Its Application in See-Through Thermochromic Displays

Journal

SMALL
Volume 16, Issue 4, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/smll.201905485

Keywords

graphene glass; H2O etchant; high quality; see-through displays

Funding

  1. National Basic Research Program of China [2016YFA0200103]
  2. National Natural Science Foundation of China [51520105003, 51432002]
  3. Beijing Municipal Natural Science Foundation [Z181100004818002, Z191100000819004]

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Direct growth of graphene on glass can bring an innovative revolution by coupling the complementary properties of traditional glass and modern graphene (such as transparency and conductivity), offering brand new daily-life related applications. However, preparation of high-quality graphene on nonmetallic glass is still challenging. Herein, the direct route of low sheet resistance graphene on glass is reported by using in situ-introduced water as a mild etchant and methane as a carbon precursor via chemical vapor deposition. The derived graphene features with large domain sizes and few amorphous carbon impurities. Intriguingly, the sheet resistance of graphene on glass is dramatically lowered down to approximate to 1170 omega sq(-1) at the optical transmittance approximate to 93%, approximate to 20% of that derived without the water etchant. Based on the highly conductive and optical transparent graphene on glass, a see-through thermochromic display is thus fabricated with transparent graphene glass as a heater. This work can motivate further investigations of the direct synthesis of high-quality graphene on functional glass and its versatile applications in transparent electronic devices or displays.

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