Recent Advances in Spin-coating Precursor Mediated Chemical Vapor Deposition of Two-Dimensional Transition Metal Dichalcogenides

Dingyi Shen, Yejun Jin, Zucheng Zhang, Rong Song, Miaomiao Liu, Wei Li, Xin Li, Ruixia Wu, Bo Li, Jia Li, Bei Zhao* and Xidong Duan*, 
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Abstract

Two-dimensional (2D) transition metal dichalcogenides (TMDs) have garnered widespread interest in the scientific community and industry for their exceptional physical and chemistry properties, and great potential for applications in diverse fields including (opto)electronics, electrocatalysis, and energy storage. Chemical vapor deposition (CVD) is one of the most compelling growth methods for the scalable growth of high-quality 2D TMDs. However, the conventional CVD process for synthesis of 2D TMDs still encounters significant challenges, primarily attributed to the high melting point of precursor powders, and achieving a uniform distribution of precursor atmosphere on the substrate to obtain controllable smaple domains is difficult. The spin-coating precursor mediated chemical vapor deposition (SCVD) strategy provides refinement over traditional methods by eliminating the use of solid precursors and ensuring a more clean and uniform distribution of the growth material on the substrate. Additionally, the SCVD process allows fine-tuning of material thickness and purity by manipulating solution composition, concentration, and the spin coating process. This Review presents a comprehensive summary of recent advances in controllable growth of 2D TMDs with a SCVD strategy. First, a series of various liquid precursors, additives, source supply methods, and substrate engineering strategies for preparing atomically thin TMDs by SCVD are introduced. Then, 2D TMDs heterostructures and novel doped TMDs fabricated through the SCVD method are discussed. Finally, the current challenges and perspectives to synthesize 2D TMDs using SCVD are discussed.

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二维过渡金属二钙化物旋转涂层前驱体介导化学气相沉积的最新进展
二维(2D)过渡金属二掺杂物(TMDs)因其优异的物理和化学性质,以及在(光)电子学、电催化和能量存储等多个领域的巨大应用潜力,受到了科学界和工业界的广泛关注。化学气相沉积(CVD)是可规模化生长高质量二维 TMD 的最引人注目的生长方法之一。然而,用于合成二维 TMDs 的传统 CVD 工艺仍然面临巨大挑战,主要原因是前驱体粉末的熔点较高,而且很难在基底上实现前驱体气氛的均匀分布,从而获得可控的微小畴。与传统方法相比,旋涂前驱体介导化学气相沉积(SCVD)策略无需使用固体前驱体,并能确保生长材料在基底上的分布更加洁净和均匀。此外,SCVD 工艺还可以通过调节溶液成分、浓度和旋涂工艺,对材料厚度和纯度进行微调。本综述全面总结了采用 SCVD 策略实现二维 TMD 可控生长的最新进展。首先,介绍了一系列通过 SCVD 制备原子级薄 TMD 的各种液体前驱体、添加剂、源供应方法和基底工程策略。然后,讨论了通过 SCVD 方法制备的二维 TMD 异质结构和新型掺杂 TMD。最后,讨论了利用 SCVD 法合成二维 TMD 目前面临的挑战和前景。
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Precision Chemistry
Precision Chemistry 精密化学技术-
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期刊介绍: Chemical research focused on precision enables more controllable predictable and accurate outcomes which in turn drive innovation in measurement science sustainable materials information materials personalized medicines energy environmental science and countless other fields requiring chemical insights.Precision Chemistry provides a unique and highly focused publishing venue for fundamental applied and interdisciplinary research aiming to achieve precision calculation design synthesis manipulation measurement and manufacturing. It is committed to bringing together researchers from across the chemical sciences and the related scientific areas to showcase original research and critical reviews of exceptional quality significance and interest to the broad chemistry and scientific community.
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