MRS Meetings and Events

 

EL05.08.13 2024 MRS Spring Meeting

Complementary 2D Tunnel FETs with Extremely Asymmetric Dual-Barrier Heterostructures

When and Where

Apr 24, 2024
5:00pm - 7:00pm

Flex Hall C, Level 2, Summit

Presenter

Co-Author(s)

Hanbin Cho1,Seonguk Yang1,Donggyu Park1,Joonki Suh1

UNIST1

Abstract

Hanbin Cho1,Seonguk Yang1,Donggyu Park1,Joonki Suh1

UNIST1
Conventional metal oxide semiconductor field-effect transistor (MOSFET) technology currently suffers from the scaling of supply voltage owing to the required power per computed bit of information tightly bound to the subthreshold swing (SS) of 60 mV/dec at room temperature. Tunneling field-effect transistor (TFET) is a promising building block for low-power and steep-slope switching applications in that the lower limit of MOSFET SS, inherently caused by thermionic emission, can be overcome by utilizing band-to-band tunneling. In this presentation, we propose the TFETs using band-offset engineering via 2D van der Waals (vdW) hetero- and multi-junctions. Indeed, 2D materials are ideally suited since they are free from non-ideal tunneling tendencies originating from lattice mismatch as seen in bulk hetero-junctions and their atom-thick body is under the complete electrostatic control. In the fabricated 2D heterostructured TFETs, SnSe<sub>2</sub> and SnSe not only function as the electron and hole reservoirs but provide a highly asymmetric band offset alignment to the intrinsic channel where MoS<sub>2</sub> and WSe<sub>2</sub> are employed for nTFET and pTFET, respectively. The van der Waals coupled TFETs show the promising device characteristics of low-power switching operations in terms of SS and off-current compared to MOSFETs using the same kinds of channels. In addition, complementary 2D TFETs, implemented in both n-type and p-type, expand the breadth of logic configurations. We expect to be able to leverage this naturally biased 2D material platform to implement effective low-power circuits.

Keywords

2D materials

Symposium Organizers

Silvija Gradecak, National University of Singapore
Lain-Jong Li, The University of Hong Kong
Iuliana Radu, TSMC Taiwan
John Sudijono, Applied Materials, Inc.

Symposium Support

Gold
Applied Materials

Session Chairs

Silvija Gradecak
Iuliana Radu

In this Session

EL05.08.03
Synthesis of 2D Intercalated Misfit Layered CoO Nanosheets from Quasi 1-D Ca Co O for Energy
Storage Applications

EL05.08.04
Content Addressable Memories and Transformable Logic Circuits Based on Ferroelectric Reconfigurable Transistors for In-Memory Computing

EL05.08.05
Heterojunctions of 2D Materials for Molecular Electronics

EL05.08.06
Hydrogenated Borophene-Graphene Broadband Photodetectors for Ultrahigh Photoresponsivity

EL05.08.07
Enhancing Gas Sensing Performance with 2D Material-Integrated Sub-Wavelength Grating Micro-Ring Resonator: Improved Sensitivity and Selective Detection

EL05.08.09
Controllable Growth of Large Area P-Type MoS2 with Transition Metal Doping using Confined Space CVD

EL05.08.10
Integrated TEM Membrane Platforms for Lateral Conversion TMD Synthesis

EL05.08.11
Chemical Vapor Transport Growth of Selenene and its Heterostructures with TMDs

EL05.08.13
Complementary 2D Tunnel FETs with Extremely Asymmetric Dual-Barrier Heterostructures

EL05.08.14
Synthesis and Atomic-Scale Investigation of Phosphorus-Doped Graphene on Copper

View More »

Publishing Alliance

MRS publishes with Springer Nature