坩埚(大地测量学)
石墨烯
质量(理念)
多环芳烃
材料科学
环境化学
化学
纳米技术
计算化学
物理
量子力学
作者
Hyo Chan Hong,Sun Jae Park,Heewon Jin,Jeong In Ryu,Seung‐Hak Baek,Dalsu Choi,Hyo Chan Lee
标识
DOI:10.1002/admt.202402067
摘要
Abstract The chemical vapor deposition (CVD) of graphene using solid polycyclic aromatic hydrocarbons (PAHs) as carbon sources has emerged as a promising technique for synthesizing high‐quality graphene. However, the use of solid PAHs often results in defective graphene, and the underlying growth mechanism remains poorly understood. In this study, the formation of graphene from pyrene, the simplest solid PAH, on Cu foil inside a sealed crucible, is investigated. Initially, pyrene films are converted into amorphous carbon (a‐C). This is followed by the gradual crystallization of a‐C near the Cu surface into graphene. The sealed crucible confines the carbon sources, preventing the complete etching of graphene and enabling an extended crystallization period. Furthermore, it is demonstrated that reducing the crucible volume extends the crystallization time, resulting in the formation of highly crystalline graphene. Thus, high‐quality graphene from pyrene with electron mobility comparable to that produced using CH₄‐based CVD is successfully synthesized. These findings demonstrate the potential of solid carbon sources as viable alternatives to CH₄ in graphene synthesis.
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