4.8 Article

Ultralarge Flakes of Ti3C2Tx MXene via Soft Delamination

期刊

ACS NANO
卷 -, 期 -, 页码 -

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsnano.2c04506

关键词

MXene; delamination; large flakes; Ti3C2; 2D materials

资金

  1. Murata Manufacturing, Japan
  2. Army Research Laboratory [W911NF-19-2-0119]
  3. Nebraska Public Power District through the Nebraska Center for Energy Sciences Research (NCESR)
  4. National Science Foundation [ECCS-2025298]
  5. Nebraska Research Initiative

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Controlling the delamination process is crucial for achieving large MXene flakes and improving the properties of MXene-based materials and devices. A soft delamination approach combined with a large-grain precursor resulted in individual flakes of up to 40 μm in lateral size.
Two-dimensional (2D) titanium carbide MXene (Ti3C2Tx) has attracted significant attention due to its combination of properties and great promise for various applications. The size of the 2D sheets is a critical parameter affecting multiple properties of assembled films, fibers and 3D structures. The increased lateral size of MXene flakes can benefit not only their assemblies by improving the interflake contacts and alignment but also fundamental studies at the individual flake level, allowing for facile patterning and investigation of intrinsic physical properties of MXenes. Increasing the average size of the parent MAX phase is one of the strategies previously used to increase the flake size of the resultant MXene. Here, we show that the protocol used for the next step of the synthesis procedure, delamination of multilayer MXene into individual nanosheets, significantly affects the lateral size of the resultant flakes. We developed a soft delamination approach, which prevents fracture of flakes and preserves their size. Combining this approach with the large-grain Ti3AlC2 MAX phase precursor, we achieved individual flakes of up to 40 mu m in lateral size. These flakes can be used for patterning multiple contacts and fabrication of field-effect transistors for multiprobe electrical characterization and other measurements. These findings indicate the importance of controlling the delamination process in order to achieve large MXene flakes and improve properties of MXene-based materials and devices.

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