MXene and MAX Phase Materials Open access Peer reviewed

Addressing Reproducibility of MXene Synthesis Using Electrochemical and Chemical Treatment of Ti 3 AlC 2 With Tetramethylammonium Hydroxide

Bartosz Gurzęda, Nicolas Boulanger, Mads Ry Vogel Jørgensen, Innokenty Kantor and 2 more

Small Methods | Jul 28, 2026

Abstract

Abstract

ABSTRACT Electrochemical etching of Ti 3 AlC 2 in an aqueous electrolyte consisting of 1 M NH 4 Cl and 0.2 M tetramethylammonium hydroxide (TMAOH) is widely cited as a method to produce fluorine‐free MXene. However, an alternative method for producing MXene by purely chemical etching of Ti 3 AlC 2 with an aqueous TMAOH has also been reported. This in situ XRD study of Ti 3 AlC 2 etching revealed the absence of MXene after electrochemical treatment in NH 4 Cl/TMAOH electrolyte. However, the formation of MXene was detected after etching with both 0.2 M and 25% (2.8 M) TMAOH solutions using a freshly ground Ti 3 AlC 2 precursor. The interlayer distance of “pristine” MXene recorded in TMAOH solution was found to be significantly different (∼17.1Å) compared to that of water‐washed and dried MXene (∼15 Å) due to the effects of swelling. Incomplete conversion of the Ti 3 AlC 2 into MXene is likely related to the accumulation of reaction products. Reproducibility issues previously reported for chemical etching with TMAOH are likely related to the surface passivation layer, which can be disrupted by grinding the precursor Ti 3 AlC 2 powder. Moreover, MXene found in earlier published experiments with electrochemical treatment of Ti 3 AlC 2 could possibly form primarily due to a chemical reaction with TMAOH during etching and subsequent “washing” with more concentrated TMAOH.

Direct answer

What can I do from this paper page?

Use this page to scan "Addressing Reproducibility of MXene Synthesis Using Electrochemical and Chemical Treatment of Ti 3 AlC 2 With Tetramethylammonium Hydroxide" quickly: start with the summary and abstract, then check the authors, source, topics, and related papers. From here, open Scollr to follow MXene and MAX Phase Materials research, save the paper, or map adjacent work.

Authors

Researchers on this paper

Bartosz Gurzęda

first | Umeå University | ORCID 0000-0001-5581-6283

Nicolas Boulanger

middle | Umeå University

Mads Ry Vogel Jørgensen

middle | Lund University

Innokenty Kantor

middle | Lund University | ORCID 0000-0001-5132-8354

Christoph Hennig

middle | Helmholtz-Zentrum Dresden-Rossendorf | ORCID 0000-0001-6393-2778

Alexandr V. Talyzin

last | Umeå University | ORCID 0000-0002-3320-8487

Research areas

Follow related topics

Citation

BibTeX

@article{Gurzda2026Addressing,
  title = {Addressing Reproducibility of MXene Synthesis Using Electrochemical and Chemical Treatment of Ti 3 AlC 2 With Tetramethylammonium Hydroxide},
  author = {Bartosz Gurzęda and Nicolas Boulanger and Mads Ry Vogel Jørgensen and Innokenty Kantor and Christoph Hennig and Alexandr V. Talyzin},
  journal = {Small Methods},
  year = {2026},
  doi = {10.1002/smtd.70878},
  url = {https://doi.org/10.1002/smtd.70878}
}

FAQ

Using this paper in a discovery workflow

How do I find related work for this paper?

Use the related papers and topic links on this page as starting points. In Scollr, you can also open the paper and build a literature map around its references, citing papers, and related work.

How can I keep up with new MXene and MAX Phase Materials research papers?

Follow MXene and MAX Phase Materials research in Scollr. New papers from the topic flow into a personalized feed, and you can save useful studies to revisit later.

Can I cite this paper from this page?

This page includes a static BibTeX block for Addressing Reproducibility of MXene Synthesis Using Electrochemical and Chemical Treatment of Ti 3 AlC 2 With Tetramethylammonium Hydroxide. Always verify the DOI, source, and publication details against the publisher record before submitting a manuscript.

Follow this research in Scollr

Follow the topics and authors behind this paper, save useful studies, and build a literature map when you are ready to go deeper.

Get the app