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Correction: Additive-mediated intercalation and surface modification of MXenes.

Jing Zou1, Jing Wu2, Yizhou Wang3

  • 1School of Environmental Ecology and Biological Engineering, School of Chemistry and Environmental Engineering, Key Laboratory of Green Chemical Engineering Process of Ministry of Education, Engineering Research Center of Phosphorus Resources Development and Utilization of Ministry of Education, Wuhan Institute of Technology, Wuhan, Hubei, 430205, P. R. China. 027wit@163.com.

Chemical Society Reviews
|March 16, 2022
PubMed
Summary

This correction clarifies the additive-mediated intercalation and surface modification of MXenes. It ensures accurate understanding of MXene material science and applications in various fields.

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Area of Science:

  • Materials Science
  • Surface Chemistry
  • Nanotechnology

Context:

  • MXenes are a class of two-dimensional transition metal carbides, nitrides, and carbonitrides.
  • Their unique properties make them promising for various applications, including energy storage, catalysis, and electromagnetic interference shielding.
  • Understanding the intercalation and surface modification of MXenes is crucial for optimizing their performance.

Purpose:

  • To correct inaccuracies in the original publication regarding additive-mediated intercalation and surface modification of MXenes.
  • To provide a more precise account of the experimental findings and their interpretation.
  • To ensure the scientific community has access to reliable information on MXene chemistry.

Summary:

  • The correction addresses specific details related to how additives influence the intercalation and surface properties of MXene materials.
  • It refines the understanding of the mechanisms involved in modifying MXene structures and surfaces using additives.
  • This ensures the reported data and conclusions are scientifically sound and reproducible.

Impact:

  • Ensures the integrity and accuracy of research findings on MXenes.
  • Facilitates correct interpretation and application of MXene properties in advanced materials development.
  • Supports continued progress in MXene-based technologies by providing a reliable knowledge base.