Graphene transfer: Paving the road for applications of chemical vapor deposition graphene

Y Song, W Zou, Q Lu, L Lin, Z Liu - Small, 2021 - Wiley Online Library
Owing to the fascinating properties of graphene, fulfilling the promising characteristics of
graphene in applications has ignited enormous scientific and industrial interest. Chemical …

High-performance printed electronics based on inorganic semiconducting nano to chip scale structures

AS Dahiya, D Shakthivel, Y Kumaresan, A Zumeit… - Nano …, 2020 - Springer
Abstract The Printed Electronics (PE) is expected to revolutionise the way electronics will be
manufactured in the future. Building on the achievements of the traditional printing industry …

Long-term reliable physical health monitoring by sweat pore–inspired perforated electronic skins

H Yeon, H Lee, Y Kim, D Lee, Y Lee, JS Lee, J Shin… - Science …, 2021 - science.org
Electronic skins (e-skins)—electronic sensors mechanically compliant to human skin—have
long been developed as an ideal electronic platform for noninvasive human health …

Synergetic advantages of atomically coupled 2D inorganic and graphene nanosheets as versatile building blocks for diverse functional nanohybrids

X Jin, TH Gu, NH Kwon, SJ Hwang - Advanced Materials, 2021 - Wiley Online Library
Abstract 2D nanostructured materials, including inorganic and graphene nanosheets, have
evoked plenty of scientific research activity due to their intriguing properties and excellent …

Transfer methods of graphene from metal substrates: A review

LP Ma, W Ren, HM Cheng - Small Methods, 2019 - Wiley Online Library
Graphene synthesized by chemical vapor deposition (CVD) on metal substrates has
attracted tremendous attention due to its high growth‐quality, scalability, and high structural …

Towards large-scale graphene transfer

F Qing, Y Zhang, Y Niu, R Stehle, Y Chen, X Li - Nanoscale, 2020 - pubs.rsc.org
The transfer process is crucial for obtaining high-quality graphene for its large-scale
industrial application. In this review, graphene transfer methods are systematically classified …

A versatile sacrificial layer for transfer printing of wide bandgap materials for implantable and stretchable bioelectronics

TA Pham, TK Nguyen, RK Vadivelu… - Advanced Functional …, 2020 - Wiley Online Library
Improving and optimizing the processes for transfer printing have the potential to further
enhance capabilities in heterogeneous integration of various sensing materials on …

Floating magnetic microrobots for fiber functionalization

A Barbot, H Tan, M Power, F Seichepine, GZ Yang - Science Robotics, 2019 - science.org
Because minimally invasive surgery is increasingly used to target small lesions, demand is
growing for miniaturized tools—such as microcatheters, articulated microforceps, or …

Recent progress in the transfer of graphene films and nanostructures

Y Gao, J Chen, G Chen, C Fan, X Liu - Small Methods, 2021 - Wiley Online Library
The one‐atom‐thick graphene has excellent electronic, optical, thermal, and mechanical
properties. Currently, chemical vapor deposition (CVD) graphene has received a great deal …

Influence of plasma treatment on SiO2/Si and Si3N4/Si substrates for large-scale transfer of graphene

R Lukose, M Lisker, F Akhtar, M Fraschke, T Grabolla… - Scientific reports, 2021 - nature.com
One of the limiting factors of graphene integration into electronic, photonic, or sensing
devices is the unavailability of large-scale graphene directly grown on the isolators …