2019
DOI: 10.1088/2053-1591/ab320d
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ZnO nanoparticles-graphene oxide-reduced graphene oxide thin films assembled layer-by-layer through non-electrostatic interactions

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Cited by 4 publications
(6 citation statements)
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“…Nanosheet-like structures of GOC and anchored ZnO nanoparticles were identified by TEM (Figure A,B) and SEM (Figure A,B). In particular, the SEM image of GOC-ZnO (Figure B) clearly shows that the ZnO nanoparticles exhibit an ellipsoidal shape, which is typically reached by ultrasound-assisted synthesis . The presence of ZnO anchored to GOC was confirmed further by EDS analysis (Figure S2).…”
Section: Resultsmentioning
confidence: 99%
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“…Nanosheet-like structures of GOC and anchored ZnO nanoparticles were identified by TEM (Figure A,B) and SEM (Figure A,B). In particular, the SEM image of GOC-ZnO (Figure B) clearly shows that the ZnO nanoparticles exhibit an ellipsoidal shape, which is typically reached by ultrasound-assisted synthesis . The presence of ZnO anchored to GOC was confirmed further by EDS analysis (Figure S2).…”
Section: Resultsmentioning
confidence: 99%
“…ZnO nanoparticles were synthesized according to the method reported elsewhere . Briefly, an ethanolic solution of Zn­(OAc) 2 ·2H 2 O (5 mmol; 1.10 g) was placed in a small borosilicate glass and submitted to horn sonication (135 W; duty cycle: 1 s on, 1 s off), while an ethanolic solution of LiOH·H 2 O (7 mmol; 0.29 g) was added dropwise.…”
Section: Methodsmentioning
confidence: 99%
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“…GO aqueous dispersion samples were obtained after pulsed ultrasonic exfoliation (Branson 450, Ti tip, 150 W, 1 s/1 s on/off, 1 h) of graphitic oxide. Graphitic oxide was prepared using the Hummers method, and ethanolic ZnONP suspensions were prepared by the sol–gel method, as described by Gross and Mello . The concentrations, determined by gravimetry, of GO (water dispersion) and ZnONP (ethanol dispersion) suspensions used were 1.88 and 8.55 g L −1 , respectively.…”
Section: Methodsmentioning
confidence: 99%
“…GO/RGO nanocomposite films containing various metal oxide nanoparticles can display superior electrical properties and be used for an even larger variety of applications. The introduction of metal oxide nanoparticles, such as zinc oxide (ZnONPs), aluminum‐doped zinc oxide, and various mixed ferrites (MFe 2 O 4 , M = Co, Zn, Cu, Ni, Mn, and so on), into the GO/RGO matrix has been explored for manufacturing supercapacitors, pollutant sensors, lithium‐ion battery electrodes, and luminescent materials . This wide variety of devices is possible because GO/RGO has a high chemical affinity and numerous adsorption sites available to interact with metal oxide nanoparticles.…”
Section: Introductionmentioning
confidence: 99%