Two-dimensional semiconductors based field-effect transistors: review of major milestones and challenges

Author:

Nandan Keshari,Agarwal Amit,Bhowmick Somnath,Chauhan Yogesh S.

Abstract

Two-dimensional (2-D) semiconductors are emerging as strong contenders for the future of Angstrom technology nodes. Their potential lies in enhanced device scaling and energy-efficient switching compared to traditional bulk semiconductors like Si, Ge, and III-V compounds. These materials offer significant advantages, particularly in ultra-thin devices with atomic scale thicknesses. Their unique structures enable the creation of one-dimensional nanoribbons and vertical and lateral heterostructures. This versatility in design, coupled with their distinctive properties, paves the way for efficient energy switching in electronic devices. Moreover, 2-D semiconductors offer opportunities for integrating metallic nanoribbons, carbon nanotubes (CNT), and graphene with their 2-D channel materials. This integration helps overcome lithography limitations for gate patterning, allowing the realization of ultra-short gate dimensions. Considering these factors, the potential of 2-D semiconductors in electronics is vast. This concise review focuses on the latest advancements and engineering strategies in 2-D logic devices.

Publisher

Frontiers Media SA

Subject

General Medicine

Reference110 articles.

1. Band-to-band tunneling in carbon nanotube field-effect transistors;Appenzeller;Phys. Rev. Lett.,2004

2. Wafer-scale van der waals heterostructures with ultraclean interfaces via the aid of viscoelastic polymer;Boandoh;ACS Appl. Mater. interfaces,2018

3. Electron tunneling through ultrathin boron nitride crystalline barriers;Britnell;Nano Lett.,2012

4. Prospects of ultra-thin nanowire gated 2d-fets for next-generation cmos technology;Cao,2016

5. A finfet with one atomic layer channel;Chen;Nat. Commun.,2020

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