Design and Simulation of Tunneling Diodes with 2D Insulators for Rectenna Switches

Author:

Li Evelyn1,Raju Parameswari2,Zhao Erhai2

Affiliation:

1. Thomas Jefferson High School for Science and Technology, Alexandria, VA 22312, USA

2. Department of Physics and Astronomy, George Mason University, Fairfax, VA 22030, USA

Abstract

Rectenna is the key component in radio-frequency circuits for receiving and converting electromagnetic waves into direct current. However, it is very challenging for the conventional semiconductor diode switches to rectify high-frequency signals for 6G telecommunication (>100 GHz), medical detection (>THz), and rectenna solar cells (optical frequencies). Such a major challenge can be resolved by replacing the conventional semiconductor diodes with tunneling diodes as the rectenna switches. In this work, metal–insulator–metal (MIM) tunneling diodes based on 2D insulating materials were designed, and their performance was evaluated using a comprehensive simulation approach which includes a density-function theory simulation of 2D insulator materials, the modeling of the electrical characteristics of tunneling diodes, and circuit simulation for rectifiers. It is found that novel 2D insulators such as monolayer TiO2 can be obtained by oxidizing sulfur-metal layered materials. The MIM diodes based on such insulators exhibit fast tunneling and excellent current rectifying properties. Such tunneling diodes effectively convert the received high-frequency electromagnetic waves into direct current.

Funder

George Mason University

Thomas Jefferson High School of Science and Technology

Publisher

MDPI AG

Reference53 articles.

1. Brown, W., George, R., Heenan, N., and Wonson, R. (1969). Microwave to DC Converter. (US3434678A), U.S. Patent.

2. Realization of current-mode fully integrated full-wave rectifier;Basak;AEU-Int. J. Electron. Commun.,2017

3. A New Translinear-Based Dual-Output Square-Rooting Circuit;Kumngern;Act. Passiv. Electron. Compon.,2008

4. Analysis and Design Methodology of RF Energy Harvesting Rectifier Circuit for Ultra-Low Power Applications;Xu;IEEE Open J. Circuits Syst.,2022

5. Wireless Communications and Applications Above 100 GHz: Opportunities and Challenges for 6G and Beyond;Rappaport;IEEE Access,2019

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