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Evolution of Electrical Chemical and Str

Cecilia Mattevi, Goki Eda

2026engraphenegraphene oxidethin filmsreductionelectrical propertiesstructure

Abstract

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Graphene, a one-atom-thick layer of carbon, exhibits remarkable electronic properties, intriguing scientists for its potential in electronics. This study aims to explore the evolution of electrical, chemical, and structural properties of chemically derived graphene thin films. Using various synthesis techniques, the research investigates the efficiency of exfoliating graphite into individual graphene sheets, particularly focusing on large-scale production. The findings reveal that the exfoliation of graphite oxide is effective, yielding high amounts of single-layered graphene oxide that can be deposited on diverse substrates. Additionally, the study emphasizes the significant impact of functional groups present in graphene oxide on its hydrophilicity and interlayer distance. Results underscore that while chemical vapor deposition (CVD) methods show promise for uniform deposition, the reliable integration of graphene into electronic devices remains a challenge, necessitating further advancements in synthesis and transfer techniques. This research contributes to the ongoing discourse on optimizing graphene production and its application in advanced electronics, paving the way for future innovations in the field.

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Cite This Work

@article{9171c751-ecde-4f21-a0aa-4a2111c367ad,
  title={Evolution of Electrical Chemical and Str},
  author={Cecilia Mattevi and Goki Eda},
  year={2026},
  language={en}
}
TY  - JOUR
TI  - Evolution of Electrical Chemical and Str
AU  - Cecilia Mattevi
AU  - Goki Eda
PY  - 2026
LA  - en
ER  -

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