异质结
石墨烯
材料科学
纳米技术
氮化硼
聚合物
接口(物质)
光电子学
复合材料
毛细管数
毛细管作用
作者
Zhujun Huang,Edoardo Cuniberto,Suji Park,Kim Kisslinger,Qin Wu,Takashi Taniguchi,Kenji Watanabe,Kevin G. Yager,Davood Shahrjerdi
出处
期刊:Small
[Wiley]
日期:2022-04-07
卷期号:18 (20): e2201248-e2201248
被引量:9
标识
DOI:10.1002/smll.202201248
摘要
Abstract Heterostructures obtained from layered assembly of 2D materials such as graphene and hexagonal boron nitride have potential in the development of new electronic devices. Whereas various materials techniques can now produce macroscopic scale graphene, the construction of similar size heterostructures with atomically clean interfaces is still unrealized. A primary barrier has been the inability to remove polymeric residues from the interfaces that arise between layers when fabricating heterostructures. Here, the interface cleaning problem of polymer‐contaminated heterostructures is experimentally studied from an energy viewpoint. With this approach, it is established that the interface cleaning mechanism involves a combination of thermally activated polymer residue mobilization and their mechanical actuation. This framework allows a systematic approach for fabricating record large‐area clean heterostructures from polymer‐contaminated graphene. These heterostructures provide state‐of‐the‐art electronic performance. This study opens new strategies for the scalable production of layered materials heterostructures.
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