English

Unexpected large electrostatic gating by pyroelectric charge accumulation

Materials Science 2025-03-10 v1 Mesoscale and Nanoscale Physics

Abstract

Pyroelectricity refers to the accumulation of charges due to changes in the spontaneous polarization of ferroelectric materials when subjected to temperature variations. Typically, these pyroelectric charges are considered unstable and dissipate quickly through interactions with the external environment. Consequently, the pyroelectric effect has been largely overlooked in ferroelectric field-effect transistors. In this work, we leverage the van der Waals interface of hBN to achieve a substantial and long-term electrostatic gating effect in graphene devices via the pyroelectric properties of a ferroelectric LiNbO3 substrate. Upon cooling, the polarization change in LiNbO3 induces high doping concentrations up to 1013 cm-2 in the adjacent graphene. Through a combination of transport measurements and non-contact techniques, we demonstrate that the pyroelectric charge accumulation, as well as its enhancement in electric fields, are responsible for this unexpectedly high doping level. Our findings introduce a novel mechanism for voltage-free electrostatic gating control with long retention.

Keywords

Cite

@article{arxiv.2502.09464,
  title  = {Unexpected large electrostatic gating by pyroelectric charge accumulation},
  author = {Yicheng Mou and Qi Liu and Jiaqi Liu and Yingchao Xia and Zejing Guo and Wenqing Song and Jiaming Gu and Zixuan Xu and Wenbin Wang and Hangwen Guo and Wu Shi and Jian Shen and Cheng Zhang},
  journal= {arXiv preprint arXiv:2502.09464},
  year   = {2025}
}

Comments

16 pages, 4 figures

R2 v1 2026-06-28T21:43:21.374Z