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Self-assembled monolayers for interfacial engineering in solution-processed thin-film electronic devices: design, fabrication, and applications
Interfacial engineering has long been a vital means of improving thin-film device
performance, especially for organic electronics, perovskites, and hybrid devices. It greatly …
performance, especially for organic electronics, perovskites, and hybrid devices. It greatly …
Interface engineering in organic field-effect transistors: principles, applications, and perspectives
Heterogeneous interfaces that are ubiquitous in optoelectronic devices play a key role in the
device performance and have led to the prosperity of today's microelectronics. Interface …
device performance and have led to the prosperity of today's microelectronics. Interface …
Self-assembled monolayers in organic electronics
Self-assembly is possibly the most effective and versatile strategy for surface
functionalization. Self-assembled monolayers (SAMs) can be formed on (semi-) conductor …
functionalization. Self-assembled monolayers (SAMs) can be formed on (semi-) conductor …
2D organic materials: status and challenges
X Yan, Y Zhao, G Cao, X Li, C Gao, L Liu… - Advanced …, 2023 - Wiley Online Library
In the past few decades, 2D layer materials have gradually become a central focus in
materials science owing to their uniquely layered structural qualities and good …
materials science owing to their uniquely layered structural qualities and good …
Contorted polycyclic aromatics
Conspectus This Account describes a body of research in the design, synthesis, and
assembly of molecular materials made from strained polycyclic aromatic molecules. The …
assembly of molecular materials made from strained polycyclic aromatic molecules. The …
Polycyclic aromatic hydrocarbon-based organic semiconductors: ring-closing synthesis and optoelectronic properties
Polycyclic aromatic hydrocarbons (PAHs) as a typical class of organic semiconductors
demonstrate unique optical, electrical, magnetic and other interesting properties due to their …
demonstrate unique optical, electrical, magnetic and other interesting properties due to their …
Highly stable organic polymer field-effect transistor sensor for selective detection in the marine environment
In recent decades, the susceptibility to degradation in both ambient and aqueous
environments has prevented organic electronics from gaining rapid traction for sensing …
environments has prevented organic electronics from gaining rapid traction for sensing …
Role of molecular order and solid-state structure in organic field-effect transistors
The invention of the transistor in 1947 by John Bardeen, William Shockley, and Walter
Brattain is regarded as one of the greatest discoveries of the 20th century since it is the basic …
Brattain is regarded as one of the greatest discoveries of the 20th century since it is the basic …
Conjugated Nonplanar Copper-Catecholate Conductive Metal–Organic Frameworks via Contorted Hexabenzocoronene Ligands for Electrical Conduction
Conductive metal–organic frameworks (c-MOFs) with outstanding electrical conductivities
and high charge carrier mobilities are promising candidates for electronics and …
and high charge carrier mobilities are promising candidates for electronics and …
Organic 2D optoelectronic crystals: charge transport, emerging functions, and their design perspective
Abstract 2D organic semiconductor crystals are emerging as a fascinating platform with
regard to their applications in organic field‐effect transistors (OFETs), attributed to their …
regard to their applications in organic field‐effect transistors (OFETs), attributed to their …