Synergistic additive-mediated CVD growth and chemical modification of 2D materials

化学气相沉积 材料科学 纳米技术 光电探测器 场效应晶体管 化学 光电子学 晶体管 物理 量子力学 电压
作者
Jizhou Jiang,Neng Li,Jing Zou,Xing Zhou,Goki Eda,Qingfu Zhang,Hua Zhang,Lain‐Jong Li,Tianyou Zhai,Andrew T. S. Wee
出处
期刊:Chemical Society Reviews [Royal Society of Chemistry]
卷期号:48 (17): 4639-4654 被引量:168
标识
DOI:10.1039/c9cs00348g
摘要

Research on 2D materials has recently become one of the hottest topics that has attracted broad interdisciplinary attention. 2D materials offer fascinating platforms for fundamental science and technological explorations at the nanometer scale and molecular level, and exhibit diverse potential applications for future advanced nano-photonics and electronics. The chemical vapor deposition (CVD) technique has shown great promise for producing high-quality 2D materials with superior electro-optical performance. However, it is difficult to synthesize continuous single-crystal 2D materials with large domain sizes and good uniformity due to the low vapor pressure of their precursors. It has been observed that the addition of selected synergistic additives to the CVD process under mild conditions can result in uniformly large-area and highly crystalline monolayer 2D materials with exceptional optical/electrical properties. Moreover, the 2D material-based devices chemically modified by synergistic additives can achieve superior performances compared to those previously reported. In this review, we compare several typical synergistic additive-mediated CVD growth processes of 2D materials, as well as their superior properties, and provide some perspectives and challenges for the future of this emerging research field.
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