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2D Conjugated polymer thin films for organic electronics: opportunities and challenges
Abstract 2D conjugated polymers (2DCPs) possess extended in‐plane π‐conjugated lattice
and out‐of‐plane π–π stacking, which results in enhanced electronic performance and …
and out‐of‐plane π–π stacking, which results in enhanced electronic performance and …
Two-dimensional materials for future information technology: status and prospects
Over the past 70 years, the semiconductor industry has undergone transformative changes,
largely driven by the miniaturization of devices and the integration of innovative structures …
largely driven by the miniaturization of devices and the integration of innovative structures …
Performance Limits and Advancements in Single 2D Transition Metal Dichalcogenide Transistor
J Chen, MY Sun, ZH Wang, Z Zhang, K Zhang… - Nano-Micro Letters, 2024 - Springer
Abstract Two-dimensional (2D) transition metal dichalcogenides (TMDs) allow for atomic-
scale manipulation, challenging the conventional limitations of semiconductor materials …
scale manipulation, challenging the conventional limitations of semiconductor materials …
Multibarrier Collaborative Modulation Devices with Ultra-High Logic Operation Density
J Pan, F Wu, Z Wang, S Liu, P Guo, J Yin, B Zhao… - ACS …, 2024 - ACS Publications
The demands for highly miniaturized and multifunctional electronics are rapidly increasing.
As scaling-down processes of transistors are restricted by physical limits, reconfigurable …
As scaling-down processes of transistors are restricted by physical limits, reconfigurable …
Low-power 2D gate-all-around logics via epitaxial monolithic 3D integration
J Tang, J Jiang, X Gao, X Gao, C Zhang, M Wang… - Nature Materials, 2025 - nature.com
Innovations in device architectures and materials promote transistor miniaturization for
improved performance, energy efficiency and integration density. At foreseeable ångström …
improved performance, energy efficiency and integration density. At foreseeable ångström …
Transferrable, wet-chemistry-derived high-k amorphous metal oxide dielectrics for two-dimensional electronic devices
Abstract Two-dimensional (2D) materials hold transformative potential for next-generation
electronics. The integration of high dielectric constant (k) dielectrics onto 2D …
electronics. The integration of high dielectric constant (k) dielectrics onto 2D …
A fast 2D MoS 2 photodetector with ultralow contact resistance
W Pan, A Wang, X Wu, X Zheng, H Chen, S Qin… - Nanoscale, 2024 - pubs.rsc.org
Two-dimensional (2D) transition metal dichalcogenides (TMDs), such as molybdenum
disulfide (MoS2), hold great promise for next-generation nanoelectronic and nanophotonic …
disulfide (MoS2), hold great promise for next-generation nanoelectronic and nanophotonic …
Medium-scale flexible integrated circuits based on 2D semiconductors
Abstract Two-dimensional (2D) semiconductors, combining remarkable electrical properties
and mechanical flexibility, offer fascinating opportunities for flexible integrated circuits (ICs) …
and mechanical flexibility, offer fascinating opportunities for flexible integrated circuits (ICs) …
Two‐Dimensional Heterostructure Complementary Logic Enabled by Optical Writing
Integrated logic circuits using atomically thin, two‐dimensional (2D) materials offer several
potential advantages compared to established silicon technologies such as increased …
potential advantages compared to established silicon technologies such as increased …
High‐Yield Production of High‐κ/Metal Gate Nanopattern Array for 2D Devices via Oxidation‐Assisted Etching Approach
W Hong, J Zhang, D Zeng, C Wang, Z Xue, M Zhang… - Small, 2024 - Wiley Online Library
Abstract 2D materials with atomically thin nature are promising to develop scaled transistors
and enable the extreme miniaturization of electronic components. However, batch …
and enable the extreme miniaturization of electronic components. However, batch …