层状过渡金属二硫族化物的流态化电化学剥离在水相中快速生产高质量纳米片

IF 9.1 1区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Ping Lu, Yu-An Li, Hailong Yan, Qiongyu Huang, Song Liu and Yi-Ge Zhou*, 
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引用次数: 0

摘要

将大块过渡金属二硫化物(TMD)颗粒转化为超薄纳米片,同时保持可接受的产率和晶体完整性,是电化学剥离中的一个重大挑战。这一挑战源于传统去角质装置中材料经历的持续潜在压力。在此,我们提出了一种新的流态化电化学剥离(FEE)方法,以有效地将TMD粉末在水相中转化为高质量的,少层的TMD纳米片。这种方法建立在单粒子冲击电化学(SPIE)的概念之上,其中法拉第或非法拉第反应过程可以发生在单个粒子与定电位电极碰撞时。该方法具有明显的优势,包括增强的质量传递和循环反应模式,有助于在粉末材料的电化学剥离过程中更有效地充电和离子插入,同时还保持了材料的晶体完整性。一般来说,这项工作为二维材料的剥离提供了一种替代和有效的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Fluidized Electrochemical Exfoliation of Layered Transition Metal Dichalcogenides toward Fast Production of High-Quality Nanosheets in the Aqueous Phase

Fluidized Electrochemical Exfoliation of Layered Transition Metal Dichalcogenides toward Fast Production of High-Quality Nanosheets in the Aqueous Phase

The transformation of bulk transition-metal dichalcogenide (TMD) particles into ultrathin nanosheets with both an acceptable yield and preserved crystalline integrity presents a substantial challenge in electrochemical exfoliation. This challenge arises from the continuous potential stress that the materials experience in traditional exfoliation setups. Herein, we propose a new fluidized electrochemical exfoliation (FEE) method to efficiently transform TMD powders into high-quality, few-layered TMD nanosheets in the aqueous phase. This approach builds upon the concept of single particle impact electrochemistry (SPIE), where Faradaic or non-Faradaic reaction processes can occur at individual particles upon their collisions with a potentiostatted electrode. The distinct advantages of this method, including enhanced mass transport and a recycling reaction mode, contribute to more efficient charging and ion intercalation during the electrochemical exfoliation of powdery materials, while also preserving the material’s crystalline integrity. This work suggests an alternative and efficient approach for the exfoliation of two-dimensional materials, in general.

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来源期刊
Nano Letters
Nano Letters 工程技术-材料科学:综合
CiteScore
16.80
自引率
2.80%
发文量
1182
审稿时长
1.4 months
期刊介绍: Nano Letters serves as a dynamic platform for promptly disseminating original results in fundamental, applied, and emerging research across all facets of nanoscience and nanotechnology. A pivotal criterion for inclusion within Nano Letters is the convergence of at least two different areas or disciplines, ensuring a rich interdisciplinary scope. The journal is dedicated to fostering exploration in diverse areas, including: - Experimental and theoretical findings on physical, chemical, and biological phenomena at the nanoscale - Synthesis, characterization, and processing of organic, inorganic, polymer, and hybrid nanomaterials through physical, chemical, and biological methodologies - Modeling and simulation of synthetic, assembly, and interaction processes - Realization of integrated nanostructures and nano-engineered devices exhibiting advanced performance - Applications of nanoscale materials in living and environmental systems Nano Letters is committed to advancing and showcasing groundbreaking research that intersects various domains, fostering innovation and collaboration in the ever-evolving field of nanoscience and nanotechnology.
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