September 2026

Conference Paper

Temperature-Dependent Transport Characteristics of 2D MoS2 Channel FETs Grown Using Salt-Based Precursors

By:
Jones, Andrew M; Muha, Greg; Gogi, Vamshi; Ghosh, Sujoy ; Kang, Kyungnam ; Xiao, Kai ; Harris, Sumner B; Jha, Rashmi
Page Number:
472-477
Book Title:
NAECON 2026 - IEEE National Aerospace and Electronics Conference
Publication Date:
September 11, 2026
Publisher Location:
IEEE, New Jersey, United States of America
Conference Name:
IEEE National Aerospace and Electronics Conference (IEEE NAECON 2026)
Conference Location:
Cincinnati, Ohio, United States of America
Conference Sponsor:
IEEE
View DOI Listing:
https://doi.org/10.1109/NAECON70028.2026.11675011

Abstract

D Transition Metal Dichalcogenides (TMDs), particularly MoS2, are promising candidates for sub-10 nm Gate All Around (GAA) CMOS FETs. Salt-assisted Chemical Vapor Deposition (CVD) enable lateral MoS2 growth at atmospheric pressure and low temperatures. This work analyzes salt-based precursor-driven CVD-grown MoS2 FETs at various temperatures. MoS2 was grown using Ammonium Molybdate salt, sulfurized at 750∘C, and transferred onto p−Si3/SiO2 substrates. At room temperature, threshold voltage (VT) ranged from -35 V to -25 V, with a peak drain current of 1.2μA/μm. As temperature increased above 325K, VT shifted exponentially, and carrier mobility dropped significantly. At 400 K, the gate lost channel control, though gate leakage current remained low. These results are compared with non-salt-based MoS2 growth to assess salt precursor effects.Notice: This manuscript has been authored by UT-Battelle, LLC, under contract DE-AC05-00OR22725 with the US Department of Energy (DOE). The US government retains and the publisher, by accepting the article for publication, acknowledges that the US government retains a nonexclusive, paid-up, irrevocable, worldwide license to publish or reproduce the published form of this manuscript, or allow others to do so, for US government purposes. DOE will provide public access to these results of federally sponsored research in accordance with the DOE Public Access Plan (https://www.energy.gov/doe-public-access-plan).