English

Achieving Large Uniaxial and Homogeneous Strain in Two-Dimensional Materials

Materials Science 2026-04-30 v1 Mesoscale and Nanoscale Physics

Abstract

Strain engineering is a powerful tool for tuning the electronic, magnetic, and topological properties of two-dimensional (2D) materials and thin films - particularly at high values of strain (>3%) where many electronic, magnetic, and structural transitions have been predicted. However, most approaches to tuning strain in 2D materials are limited below 1.5%, with poor repeatability when cycling strain and low strain transfer when cooling to cryogenic temperatures. Here, we report a high-yield sample preparation and device strain platform that overcomes these limitations, enabling precise, reversible strain tuning up to the intrinsic strain-to-failure of the materials tested herein. In addition, we show that this platform can be used to controllably design uniform linear strain gradients across of 10's of μ\mum, providing a novel route to systematically investigate flexoelectric and flexomagnetic phenomena. Using CrSBr as a model system, we demonstrate uniform uniaxial strain, up to ~4%, with negligible slippage and linear strain gradients of up to 0.06%/μ\mum. We further show that our strain approach is applicable to a broad class of 2D materials, validating its performance for three different phases of transition metal dichalcogenides: 2H-MoTe2_2, 1T^\prime-MoTe2_2 and Td_\mathrm{d}-WTe2_2. In Td_\mathrm{d}-WTe2_2, verified by theoretical calculations, we show a continuous redshift of the A13_1^3 mode, up to a record-breaking ~5.5% strain, with a clear separation of the A13_1^3 and A12_1^2 modes starting at 2% strain.

Keywords

Cite

@article{arxiv.2604.26164,
  title  = {Achieving Large Uniaxial and Homogeneous Strain in Two-Dimensional Materials},
  author = {Yangchen He and Jessica Kienbaum and Wuzhang Fang and Hongrui Ma and Ying Wang and Ping Yuan and Daniel A. Rhodes},
  journal= {arXiv preprint arXiv:2604.26164},
  year   = {2026}
}
R2 v1 2026-07-01T12:40:16.228Z