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February 28, 2011Applied Physics Letters229 citations

Low-temperature synthesis of large-area graphene-based transparent conductive films using surface wave plasma chemical vapor deposition

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JKJae‐Ho KimMIMasatou IshiharaYKYoshinori Koga

Key Points

  • This study aims to develop an efficient low-temperature method for synthesizing graphene-based films suitable for optoelectronic applications.
  • Utilized surface wave plasma chemical vapor deposition for film synthesis.
  • Targeted low-temperature synthesis at 300–400 °C.
  • Produced large-area films measuring 23 cm × 20 cm.
  • Achieved few-layer graphene sheets with favorable transparency and conductivity characteristics.
  • Demonstrated successful operation of a touch panel fabricated from the films.

Abstract

We present a low-temperature (300–400 °C), large-area (23 cm×20 cm) and efficient synthesis method for graphene-based transparent conductive films using surface wave plasma chemical vapor deposition. The films consist of few-layer graphene sheets. Their transparency and conductivity characteristics make them suitable for practical electrical and optoelectronic applications, which have been demonstrated by the proper operation of a touch panel fabricated using the films. The results confirm that our method could be suitable for the industrial mass production of macroscopic-scale graphene-based films.

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Cite This Study

Kim et al. (2011) studied this question.

synapsesocial.com/papers/6a0e5f064a1f6bc478042fcehttps://doi.org/10.1063/1.3561747
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