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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 …
Skin bioelectronics towards long-term, continuous health monitoring
Skin bioelectronics are considered as an ideal platform for personalised healthcare because
of their unique characteristics, such as thinness, light weight, good biocompatibility …
of their unique characteristics, such as thinness, light weight, good biocompatibility …
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 for optoelectronic applications
The remarkable merits of 2D materials with atomically thin structures and optoelectronic
attributes have inspired great interest in integrating 2D materials into electronics and …
attributes have inspired great interest in integrating 2D materials into electronics and …
The emergence of organic single‐crystal electronics
Organic semiconducting single crystals are perfect for both fundamental and application‐
oriented research due to the advantages of free grain boundaries, few defects, and minimal …
oriented research due to the advantages of free grain boundaries, few defects, and minimal …
A critical outlook for the pursuit of lower contact resistance in organic transistors
To take full advantage of recent and anticipated improvements in the performance of organic
semiconductors employed in organic transistors, the high contact resistance arising at the …
semiconductors employed in organic transistors, the high contact resistance arising at the …
Macroscopic and high-throughput printing of aligned nanostructured polymer semiconductors for MHz large-area electronics
High-mobility semiconducting polymers offer the opportunity to develop flexible and large-
area electronics for several applications, including wearable, portable and distributed …
area electronics for several applications, including wearable, portable and distributed …
Two-dimensional light-emitting materials: preparation, properties and applications
The past decade has witnessed tremendous research efforts devoted to two-dimensional
(2D) materials and great progress made in both their fundamental studies and technique …
(2D) materials and great progress made in both their fundamental studies and technique …
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 …