Author
Listed:
- Pengfei Yang
(Peking University
Peking University)
- Xiaolong Zou
(Tsinghua University)
- Zhepeng Zhang
(Peking University
Peking University)
- Min Hong
(Peking University
Peking University)
- Jianping Shi
(Peking University
Peking University)
- Shulin Chen
(Peking University
Harbin Institute of Technology)
- Jiapei Shu
(Peking University)
- Liyun Zhao
(Peking University)
- Shaolong Jiang
(Peking University
Peking University)
- Xiebo Zhou
(Peking University
Peking University)
- Yahuan Huan
(Peking University
Peking University)
- Chunyu Xie
(Peking University
Peking University)
- Peng Gao
(Peking University
Peking University
Collaborative Innovation Center of Quantum Matter)
- Qing Chen
(Peking University)
- Qing Zhang
(Peking University)
- Zhongfan Liu
(Peking University)
- Yanfeng Zhang
(Peking University
Peking University)
Abstract
Monolayer transition metal dichalcogenides (TMDs) have become essential two-dimensional materials for their perspectives in engineering next-generation electronics. For related applications, the controlled growth of large-area uniform monolayer TMDs is crucial, while it remains challenging. Herein, we report the direct synthesis of 6-inch uniform monolayer molybdenum disulfide on the solid soda-lime glass, through a designed face-to-face metal-precursor supply route in a facile chemical vapor deposition process. We find that the highly uniform monolayer film, with the composite domains possessing an edge length larger than 400 µm, can be achieved within a quite short time of 8 min. This highly efficient growth is proven to be facilitated by sodium catalysts that are homogenously distributed in glass, according to our experimental facts and density functional theory calculations. This work provides insights into the batch production of highly uniform TMD films on the functional glass substrate with the advantages of low cost, easily transferrable, and compatible with direct applications.
Suggested Citation
Pengfei Yang & Xiaolong Zou & Zhepeng Zhang & Min Hong & Jianping Shi & Shulin Chen & Jiapei Shu & Liyun Zhao & Shaolong Jiang & Xiebo Zhou & Yahuan Huan & Chunyu Xie & Peng Gao & Qing Chen & Qing Zha, 2018.
"Batch production of 6-inch uniform monolayer molybdenum disulfide catalyzed by sodium in glass,"
Nature Communications, Nature, vol. 9(1), pages 1-10, December.
Handle:
RePEc:nat:natcom:v:9:y:2018:i:1:d:10.1038_s41467-018-03388-5
DOI: 10.1038/s41467-018-03388-5
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