Synthesis of Chlorine‐Terminated MXenes by Dry Selective Extraction with TiCl <sub>4</sub>

B Benjamin Davis (Private address) D Dmitri LaBelle (Department of Materials Science and Engineering Drexel University Philadelphia PA 19104 USA) H Hyunho Kim (Drexel University , , , ,) T Teng Zhang T Tetiana Parker (Drexel University , , , ,) S Stefano Ippolito K Kateryna Shevchuk (Department of Materials Science and Engineering Drexel University Philadelphia PA 19104 USA) J Jongyoun Kim (Department of Materials Science and Engineering Drexel University Philadelphia PA 19104 USA) G Geetha Valurouthu (Department of Materials Science and Engineering Drexel University Philadelphia PA 19104 USA) Y Yong‐Jie Hu (Department of Materials Science and Engineering Drexel University Philadelphia PA 19104 USA) Y Yury Gogotsi

Abstract

Abstract Despite rapid research progress in the field of MXenes over the past decade, this new family of nanomaterials still faces challenges in terms of scalable manufacturing and control over surface chemistry, which determines many of their physicochemical properties. This work demonstrates titanium tetrachloride (TiCl 4 ) as a new type of gas‐phase etchant for the dry selective extraction of the A‐element (Al) from MAX phases, providing MXenes with uniform chlorine surface terminations. Our approach eliminates the need for extensive washing, which is required in the cases of wet‐chemical and molten salt etching. Computational data suggest that TiCl 4 reacts with the MAX phases directly to extract AlCl 3 rather than forming any intermediate phases. One of the resulting MXenes, Ti 3 C 2 Cl 2 , was then delaminated into few‐layer flakes by intercalating lithium ions from an organic solvent. Some of the hydrophobic delaminated flakes were discovered to roll into a tubular shape, forming 1‐dimensional nanoscrolls. Our dry etching process provides opportunities for the scalable synthesis of halogen‐terminated Ti‐ and Nb‐based MXenes with two to four M‐element layers and controlled surface chemistry.

Article Details

Volume / Issue Vol. 65, Issue 3
Published January 16, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (11)

B

Benjamin Davis

Private address

D

Dmitri LaBelle

Department of Materials Science and Engineering Drexel University Philadelphia PA 19104 USA

H

Hyunho Kim

Drexel University , , , ,

T

Teng Zhang

T

Tetiana Parker

Drexel University , , , ,

S

Stefano Ippolito

K

Kateryna Shevchuk

Department of Materials Science and Engineering Drexel University Philadelphia PA 19104 USA

J

Jongyoun Kim

Department of Materials Science and Engineering Drexel University Philadelphia PA 19104 USA

G

Geetha Valurouthu

Department of Materials Science and Engineering Drexel University Philadelphia PA 19104 USA

Y

Yong‐Jie Hu

Department of Materials Science and Engineering Drexel University Philadelphia PA 19104 USA

Y

Yury Gogotsi