In Situ Formation of Ripplocations in Hybrid Organic–Inorganic MXenes

F Francisco Lagunas (Department of Physics) C Chenkun Zhou (Department of Chemistry) D Di Wang A Anupma Thakur (School of Materials Engineering Purdue University West Lafayette IN 47907 USA) B Babak Anasori D Dmitri V. Talapin Z Zachary D. Hood (Applied Materials Division Argonne National Laboratory Lemont IL 60439 USA) R Robert F. Klie (Department of Physics)

Abstract

Abstract Inorganic–organic hybrid MXenes (h‐MXenes) are a family of 2D transition metal carbides and nitrides functionalized with alkylimido and alkylamido surface groups. Using cryogenic and room temperature scanning transmission electron microscopy (STEM) and electron energy‐loss spectroscopy (EELS), it is shown that ripplocations, a form of a fundamental defect in 2D and layered structures, are abundant in this family of materials. Furthermore, detailed studies of electron probe sample interactions, focusing on structural deformations caused by the electron beam are presented. The findings indicate that at cryogenic temperatures (≈100 K) and below a specific dose threshold, the structure of h‐MXenes remains largely intact. However, exceeding this threshold leads to electron beam‐induced deformation through ripplocations. Interestingly, the deformation behavior, required dose, and resultant structure are highly dependent on temperature. At 100 K, it is demonstrated that the electron beam can induce ripplocations in situ with a high degree of precision.

Article Details

Volume / Issue Vol. 37, Issue 13
Published April 01, 2025
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (8)

F

Francisco Lagunas

Department of Physics

C

Chenkun Zhou

Department of Chemistry

D

Di Wang

A

Anupma Thakur

School of Materials Engineering Purdue University West Lafayette IN 47907 USA

B

Babak Anasori

D

Dmitri V. Talapin

Z

Zachary D. Hood

Applied Materials Division Argonne National Laboratory Lemont IL 60439 USA

R

Robert F. Klie

Department of Physics