Engineering copper iodide (CuI) for multifunctional p‐type transparent semiconductors and conductors

A Liu, H Zhu, MG Kim, J Kim, YY Noh - Advanced Science, 2021 - Wiley Online Library
Developing transparent p‐type semiconductors and conductors has attracted significant
interest in both academia and industry because metal oxides only show efficient n‐type …

Dielectric materials for electrolyte gated transistor applications

W Huang, J Chen, G Wang, Y Yao, X Zhuang… - Journal of Materials …, 2021 - pubs.rsc.org
In this review, we summarize the recent progress in developing dielectric materials for
electrolyte gated transistors (EGTs). Semiconductors for EGTs have been extensively …

[HTML][HTML] Recent advanced applications of ion-gel in ionic-gated transistor

D Wang, S Zhao, R Yin, L Li, Z Lou, G Shen - Npj Flexible Electronics, 2021 - nature.com
Diversified regulation of electrons have received much attention to realize a multi-functional
transistor, and it is crucial to have a considerable control over the charge carriers in …

Neural-inspired artificial synapses based on low-voltage operated organic electrochemical transistors

R Bhunia, EK Boahen, DJ Kim, H Oh, Z Kong… - Journal of Materials …, 2023 - pubs.rsc.org
Artificial synaptic devices that emulate the neural functionalities of the human brain have
received research attention owing to their inherent ability to build brain-like computing …

High-mobility flexible/transparent p-type copper iodide thin-film transistors and complementary inverters

H Wu, L Liang, X Wang, X Shi, H Zhang, Y Pei… - Applied Surface …, 2023 - Elsevier
High-performance transparent and low-process-temperature p-type devices are essential for
portable and 'invisible'electronics. In this work, high-performance p-channel copper iodide …

Design of ion-gated transistor materials at the molecular level

G Liu, Y Guo, Y Liu - Matter, 2024 - cell.com
Ion-gated transistors (IGTs) are iontronic devices in which the channel layer is in direct
contact with the electrolyte, exploiting the coupled nature of ionic and electronic fluxes. This …

[HTML][HTML] Insights into first-principles characterization of the monoclinic VO 2 (B) polymorph via DFT+ U calculation: electronic, magnetic and optical properties

E Mohebbi, E Pavoni, D Mencarelli, P Stipa… - Nanoscale …, 2022 - pubs.rsc.org
We have studied the structural, electronic, magnetic, and optical properties of the VO2 (B)
polymorph using first-principles calculations based on density functional theory (DFT). This …

Wide‐Range‐Tunable p‐Type Conductivity of Transparent CuI1−xBrx Alloy

N Yamada, Y Tanida, H Murata… - Advanced Functional …, 2020 - Wiley Online Library
Transparent p‐type semiconductors with wide‐range tunability of the hole density are rare.
Developing such materials is a challenge in the field of transparent electronics that utilize …

Unveiling the properties of transition-metal dichalcogenides: a comprehensive study of WTe2, WSe2, ZrTe2, and NiTe2 in bulk and monolayer forms

Y Fazeli, Z Etesami, Z Nourbakhsh… - Journal of Materials …, 2023 - Springer
This study conducts a thorough examination of the properties of four transition-metal
dichalcogenides (TMDCs): WTe2, WSe2, ZrTe2, and NiTe2, using first-principles density …

Solution-processed p-Type CuI thin-film transistors with NAND logic function

X Yuan, W Dou, Y Wang, J Zeng… - … on Electron Devices, 2022 - ieeexplore.ieee.org
In this article, copper iodide (CuI) is used as the channel layer in thin-film transistors (TFTs)
for the first time to realize the NAND logic function. TFTs are optimized by 80° C annealing …