Graphene oxide composite Research Status and Progress

  • senhua Lu
Ariticle ID: 177
190 Views, 8 PDF Downloads
Keywords: Graphite oxide, Composite, microstructure, Enhanced toughening,

Abstract

Graphite oxide ( Gnpheneoxdego ) with its unique two-dimensional nanometer layer structure , Super large surface area and hydrophilic polar interface , make it function The field of composite materials has wide application and development prospects . This article summarizes recent years go Composites in enhancedtoughening , Adsorption separation , photocatalysis and Biomedicine Research Status and Progress , introduced go regulating the formation of structured and orderly microstructure of polymeric materials and cement matrix produces significant enhancement The mechanism of the toughness , Analysis go composites on adsorption , catalysis , the principles of biomedicine, etc. , indicates that go Enhanced toughened composites ,,go adsorption complex Composite and go application prospect and development trend of photocatalytic composite materials .

References

FAN Z j,wang K/wei T,et al. An environmentally friendly and efficient route for the reduction of graphene oxide by aluminum powder[j]. carbon,2010,48 (5) :1686-1689.

Yang Yong Glow , Sun Hongjuan , Peng Tongjiang . Preparation and characterization of graphene by redox method [J]. Journal of Inorganic Chemistry , , : 2083-2090.

Yang Y h,sun H J,peng T J. Synthesis and structural char acterization of graphene by oxidation reduct¬ ION[J]. Chinese Jour nal of inorganic¬chemistry, , : 2083-2090.

Akhavan O, ghaderi E. photocatalytic reduction of graphene oxide nanosheets on Ti 0 2 Thin Film for photoinac-tivation of bacteria in solar light irradiation [J]. The Journal of physical chemistry c,2009,113:20214-20220.

siiin H j,kim K K/3enayad A. Efficient reduction of graph- ite oxide by sodium borohydride and its E Ffect on elec-trical con- ductance [J]. Advanced Functional Materials, 2009 (): 1987-1992.

Wanwupo , Zhao Zongbin , Hu Han , , and so on . Sodium Citrate green reduction preparation of graphene []. New

type carbon material , , 1 16-20.

WANWB , ziiaozb , iiuii , etal. Green "Reductionofgra- phene oxide to graphene by sodium citrate[j]. New Carbon Ma-te-

rials , , (1):16-20.

JIN Y II , HUANG S , ZHANG M , etal. A Green and eficient method to produce graphene for electrochemical ca-pacitors from graphene using oxide sodium As a reducing agent [J]. Applied Surface science,2013,268 (3) :541 - 546.

Akhavan O. photocatalytic reduction of graphene oxides hy bridized by ZnO nanoparticles in Ethanol[j¬ ]. car-bon,2011,49 (1):

-18

Ciioobtasiiani M , Akhavan O. Visible lightinducedpho-tocatalytic reduction of graphene oxide by tungsten oxide thin films[j]. Applied Surface science,2013,276 : 628 -634.

Akhavan o,kalaee M, Alavi Z S,et al. Increasing activity of green tea antioxidant in the polyphenols Ce iron for the reduction of graphene oxide[j]. Carbon,8():

-3025 .

Kauppila j^kunnas p^damlin P. electrochemcal reduc- tion of graphene oxide film RN aqueous and organ IC So-lutions[j]. Electrochemical Acta,2013, 89:84 -?

WANG C^ziian l,qiao W M,et al. Preparation of graphene nanosheets through]. New Carbon materials»2011, (1): 21-25 .

Stankovich S , piner R D , NGUYEN S T , et al. Synthesis and exfoliation of isocyanate treated graphene oxide nanoplatelets [J]. carbon,2006,44:3342 - 3347.

FANG F , KONG L T , HUANG J R , et al removal of cobalt ions from aqueous solution by an amination graphene oxide nanocom- posite[j]. Journal ofliazardous materials,2014,270:1-10.

yazmin I a-v , CESAR cl-p , Marcela M , et al. nitroxide Functionalizedgraphene oxide from graphite oxide[j]. Carbon,

,3:376-389.

ISIS E M-C , JOEY D , HANG n n , et al. Graphene oxide functionalized with ethylenediamine triacetic acid for heavy metal adsorption and anti-mic Robial Applications[j]. Carbon, 2014,

(a) :289-301.

Zheng . functional oxidation of graphene ribbons /eva Preparation of composite films and representations [J]. Material Engineering , 2015,3 (2) 99-102.

Ziieng y. Preparation and characterization of functionalized graphene oxide Nanoribbons/eva composite Iilms[J] . Journal of Materials engineering,2015,43 (2) :99-102.

yangwenbin , Zhang , Liu Yan- Wei , , and so on . Preparation and application of the graphene composites into

Show [J]. Material Engineering , 2015,3 (3) : 91-97.

Yang W B , Ziiang L , LIU J W , etal. Progress Inresearchon Preparation and application of graphene composites [J]. Journal of Materials engineering,2015,43 (3) :- -

MARIA L. Crystallization behavior of poly (L-lactic acid) [J]. Polymer,2006,47 7554-7563.

RENE Armaria L. Kinetics of Crystal nucleation of poly (l-lacticacid) [J]. Polymer,2013,54 6882-6885.

ARTUR M p,susana m,nes C. Biocompatibility poly (lactic acid) with incorporated graphene-based ERIALS[J]. Colloids and Surfaces B:biointerfaces,2013,104 (3) : 229-238.

WANG H S,qiu Z B. Crystallization kinetics and morphology of biodegradable poly (l-lactic acid)/graphene Nanocomposites : influences of graphene oxide loading and crystallization TEM- perature[j]. Thermochimica ac-ta,2012,527 :, - +

WANG H S, QIU Z B. Crystallization behaviors of Biodegrad- abalepoly (l-lactic acid)/graphene oxide nanocom-posites from THEAMORPHOUSSTATE[J]. Thermochim Acta,, all, 526 (1-2):229-236

How to Cite
Lu, senhua. (1). Graphene oxide composite Research Status and Progress. Composite Materials Research, 2(1). https://doi.org/10.1828/cmr.v2i1.177
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