Graphene is one of the most promising materials for post-silicon electronics and has outstanding physical and electronic properties. In particular, its unique 2D sp 2-hybridized …
M Yang, Y Liu, T Fan, D Zhang - Progress in Materials Science, 2020 - Elsevier
The prosperity of graphene in the past decade has provided us with both a versatile platform for scientific studies and a multitude of solutions for technological applications. Interfacing …
The escalating level of atmospheric carbon dioxide (CO 2) due to the combustion of fossil fuels has been identified as a major contributor to climate change. CO 2 capture using …
X Zhang, H Zhang, C Li, K Wang, X Sun, Y Ma - Rsc Advances, 2014 - pubs.rsc.org
Driven by the environmental problems and energy crisis, the development of clean and renewable energy materials as well as their devices is urgently demanded. Supercapacitors …
Z Chen, X An, L Dai, Y Xu - Nano Energy, 2020 - Elsevier
Graphene, versatile building blocks for functional composite materials, shows multiple fascinating properties and draws great interest, especially in the field of electrochemical …
Graphene can be transformed from a semimetal into a semiconductor if it is confined into nanoribbons narrower than 10 nm with controlled crystallographic orientation and well …
W Xu, TW Lee - Materials Horizons, 2016 - pubs.rsc.org
Graphene has been the focus of research since its isolation in 2004. However, the lack of a bandgap restricts its application in semiconductor industry in spite of its predicted extremely …
W Yuan, J Chen, G Shi - Materials Today, 2014 - Elsevier
Nanoporous graphene (NPG) materials have been widely studied and exploited to open the band gap, increase the specific surface area and dispersibility, and/or improve the optical …
Graphene is a single carbon layer of zero bandgap without edges and basal plane fluctuations. Engineering such infinite plane structure to finite size or appropriate structure …