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二维 MXene 薄片的尺寸相关物理和电化学性质。

Size-Dependent Physical and Electrochemical Properties of Two-Dimensional MXene Flakes.

机构信息

Department of Materials Science and Engineering, and A.J. Drexel Nanomaterials Institute , Drexel University , Philadelphia , Pennsylvania 19104 , United States.

Department of Physics and Astronomy , University of Pennsylvania , Philadelphia , Pennsylvania 19104 , United States.

出版信息

ACS Appl Mater Interfaces. 2018 Jul 25;10(29):24491-24498. doi: 10.1021/acsami.8b04662. Epub 2018 Jul 11.

Abstract

Two-dimensional (2D) particles, including transition metal carbides (MXenes), often exhibit large lateral-size polydispersity in delaminated colloidal solutions. This heterogeneity results in challenges when conducting fundamental studies, such as investigating correlations between properties and the 2D flake size. To resolve this challenge, we have developed solution-processable techniques to control and sort 2D titanium carbide (TiCT ) MXene flakes after synthesis based on sonication and density gradient centrifugation, respectively. By tuning the sonication conditions, TiCT flakes with varied lateral sizes, ranging from 0.1 to ∼5 μm, can be obtained. Furthermore, density gradient centrifugation was used to sort TiCT flakes with different lateral sizes into more monodisperse fractions. These processing techniques allow for the characterization of size-dependent optical and electronic properties by measuring the absorption spectra and film conductivity, respectively. Additionally, by testing the material as electrochemical capacitor electrodes, we show the TiCT flake-size dependence of electrochemical performance. TiCT films made of flakes with lateral sizes of ∼1 μm showed the best capacitance of 290 F/g at 2 mV/s and rate performance with 200 F/g at 1000 mV/s. The work provides a general methodology which can be followed to control the size of MXenes  and other 2D materials for a variety of applications and fundamental size-dependent studies.

摘要

二维(2D)粒子,包括过渡金属碳化物(MXenes),在剥离胶体溶液中通常表现出较大的横向尺寸多分散性。这种异质性在进行基础研究时会带来挑战,例如研究性质与 2D 薄片尺寸之间的相关性。为了解决这个挑战,我们开发了基于超声处理和密度梯度离心的溶液处理技术,分别在合成后对 2D 碳化钛(TiCT)MXene 薄片进行控制和分类。通过调整超声条件,可以获得具有不同横向尺寸的 TiCT 薄片,尺寸范围从 0.1 到约 5 μm。此外,密度梯度离心用于将不同横向尺寸的 TiCT 薄片分成更单分散的级分。这些处理技术允许通过测量吸收光谱和薄膜电导率分别对尺寸依赖性的光学和电子特性进行表征。此外,通过测试作为电化学电容器电极的材料,我们展示了 TiCT 薄片尺寸对电化学性能的依赖性。由横向尺寸约为 1 μm 的薄片制成的 TiCT 薄膜在 2 mV/s 时表现出最佳的电容为 290 F/g,在 1000 mV/s 时具有 200 F/g 的倍率性能。这项工作提供了一种通用的方法,可以用于控制 MXenes 和其他 2D 材料的尺寸,以用于各种应用和基础的尺寸依赖性研究。

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