Integration of Ultrathin Hafnium Oxide with a Clean van der Waals Interface for Two-Dimensional Sandwich Heterostructure Electronics.

Jing, Yumei; Dai, Xianfu; Yang, Junqiang; Zhang, Xiaobin; Wang, Zhongwang; Liu, Xiaochi; Li, Huamin; Yuan, Yahua et al. · Nano Lett · 2024

basic_science · Level V

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Abstract

Integrating high-κ dielectrics with a small equivalent oxide thickness (EOT) with two-dimensional (2D) semiconductors for low-power consumption van der Waals (vdW) heterostructure electronics remains challenging in meeting both interface quality and dielectric property requirements. Here, we demonstrate the integration of ultrathin amorphous HfO<sub><i>x</i></sub> sandwiched within vdW heterostructures by the selective thermal oxidation of HfSe<sub>2</sub> precursors. The self-cleaning process ensures a high-quality interface with a low interface state density of 10<sup>11</sup>-10<sup>12</sup> cm<sup>-2</sup> eV<sup>-1</sup>. The synthesized HfO<sub><i>x</i></sub> displays excellent dielectric properties with an EOT of ∼1.5 nm, i.e., a high κ of ∼16, an ultralow leakage current of 10<sup>-6</sup> A/cm<sup>2</sup>, and an impressively high breakdown field of 9.5 MV/cm. This facilitates low-power consumption vdW heterostructure MoS<sub>2</sub> transistors, demonstrating steep switching with a low subthreshold swing of 61 mV/decade. This one-step integration of high-κ dielectrics into vdW sandwich heterostructures holds immense potential for developing low-power consumption 2D electronics while meeting comprehensive dielectric requirements.