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Synthesis and mechanical properties of Al matrix composites reinforced with few-layer graphene and graphene oxide

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TLDR
The reinforcing effect of graphene nanosheets in Al matrix composites has been studied in this paper, where the Al powder was mixed with 1.5% of few-layer graphene and graphene oxide (FLGO) using a wet method followed by cold-compaction and sintering.
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This article is published in Journal of Alloys and Compounds.The article was published on 2017-12-25. It has received 100 citations till now. The article focuses on the topics: Indentation hardness & Graphene.

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A short review on mechanical properties of graphene reinforced metal matrix composites

TL;DR: In this article, the studies conducted on metal matrix composites, in which graphene was used as reinforcing material, were investigated and the properties of the produced composites were presented and the factors affecting these properties were explained.
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Synthesis, characterization, and properties of graphene reinforced metal-matrix nanocomposites

TL;DR: In this paper, a review of recent progress in the synthesis of metal-matrix graphene nanocomposites using powder metallurgy technique involving milling, compaction, and extrusion or rolling with special emphasis on the agglomeration of graphene, interfacial bonding, and reaction between metal matrix and graphene has been critically reviewed.
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Interfacial reaction induced efficient load transfer in few-layer graphene reinforced Al matrix composites for high-performance conductor

TL;DR: In this article, an example of improving the interfacial load transfer and strength of few-layer graphene (FLG)/Al composites by an appropriate interfacial reaction is presented.
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Uniform dispersion and interface analysis of nickel coated graphene nanoflakes/ pure titanium matrix composites

TL;DR: In this article, the authors applied electroless plating method to prepare Ni decorated GNFs (Ni-GNFs) as a reinforcement in the Ti matrix to uniformly disperse the GNFs in Ti matrix and relieve the severe interfacial reaction between metal and carbon nanophase.
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The chemistry of graphene oxide

TL;DR: This review will be of value to synthetic chemists interested in this emerging field of materials science, as well as those investigating applications of graphene who would find a more thorough treatment of the chemistry of graphene oxide useful in understanding the scope and limitations of current approaches which utilize this material.
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Chemical methods for the production of graphenes.

TL;DR: The use of colloidal suspensions to produce new materials composed of graphene and chemically modified graphene is reviewed, which is both versatile and scalable, and is adaptable to a wide variety of applications.
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Graphene based materials: Past, present and future

TL;DR: Graphene and its derivatives are being studied in nearly every field of science and engineering as mentioned in this paper, and recent progress has shown that the graphene-based materials can have a profound impact on electronic and optoelectronic devices, chemical sensors, nanocomposites and energy storage.
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Graphene/Polymer Nanocomposites

TL;DR: Graphene has emerged as a subject of enormous scientific interest due to its exceptional electron transport, mechanical properties, and high surface area, and when incorporated appropriately, these atomically thin carbon sheets can significantly improve physical properties of host polymers at extremely small loading.
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Chemically derived graphene oxide: towards large-area thin-film electronics and optoelectronics.

TL;DR: The fundamental structure and properties of GO-based thin films are discussed in relation to their potential applications in electronics and optoelectronics.
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