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Graphene‐Based Materials: Synthesis, Characterization, Properties, and Applications

Small · 2011 · Vol. 7(14) · pp. 1876–1902
Xiao HuangZongyou YinShixin WuXiaoying QiQiyuan HeQichun ZhangQingyu YanFreddy BoeyHua Zhang

Abstract

Graphene, a two-dimensional, single-layer sheet of sp(2) hybridized carbon atoms, has attracted tremendous attention and research interest, owing to its exceptional physical properties, such as high electronic conductivity, good thermal stability, and excellent mechanical strength. Other forms of graphene-related materials, including graphene oxide, reduced graphene oxide, and exfoliated graphite, have been reliably produced in large scale. The promising properties together with the ease of processibility and functionalization make graphene-based materials ideal candidates for incorporation into a variety of functional materials. Importantly, graphene and its derivatives have been explored in a wide range of applications, such as electronic and photonic devices, clean energy, and sensors. In this review, after a general introduction to graphene and its derivatives, the synthesis, characterization, properties, and applications of graphene-based materials are discussed.

Graphene research and applicationsSupercapacitor Materials and FabricationAdvancements in Battery MaterialsGrapheneMaterials scienceNanotechnologyCharacterization (materials science)GraphiteOxideGraphite oxideGraphene oxide paperSurface modificationThermal stability

MeSH terms

GraphitePolymersSemiconductorsNanotechnologyNanostructures
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