DOE OSTI · 2477949
Improving 2D Schottky contacts using an intralayer strategy
Abstract
An additional insulating layer between the electrode and semiconductor is beneficial to reduce the interfacial coupling and build two-dimensional (2D) Schottky contacts. Here, an intralayer strategy was proposed by using metallic 2D Bi 2 Sr 2 CaCu 2 O 8+δ (BSCCO) as contacts on 2D semiconductors. Inside a BSCCO monolayer, a conductive layer is sandwiched between insulating layers. Thus, the BSCCO contact has its own insulating layer, which is ultra-thin, single crystalline, and of high quality. This native layer could reduce the metal-induced gap state and thus weaken the interfacial Fermi level pinning effect. Such 2D Schottky diodes thus have barrier heights of 300 mV and a rectification ratio of 104. Furthermore, 2D metal-semiconductor field-effect transistors with BSCCO Schottky gate have a high on-off ratio, low leakage current, and low subthreshold swing value near the theoretical limit. The intralayer structure offers a new approach to improve the 2D Schottky junctions and has prospects in 2D electronics and optoelectronics.
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Zhou, Zuoping, Zhang, Guangqi, Yao, Junjie, Liang, Liang, Li, Yuheng, Zhao, Zhongyuan, Mei, Zhen, Gu, Genda D., Xu, Yong, Fan, Shoushan, Li, Qunqing, Chen, Xi, Wei, Yang. 2024-06-19. Improving 2D Schottky contacts using an intralayer strategy. https://doi.org/10.1016/j.device.2024.100434
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