Graphene – Synthesis, Characterization, Properties and Applications

We study synthesis, characterization, and properties of various nanoparticles and nanostructured hybrid materials for catalyitc, biomedical and energy applications. Our reseacrh is published promptly. Some articles have been chosen for journal cover pages (see below).

Synthesis and Characterization of Graphene/Cu2SnS3 …

Graphene-based materials : synthesis, characterization, properties, and applications.

Synthesis and Characterization of Graphene Thin Films …

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Synthesis and Characterization of Graphene Thin Films by Chemical ..

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SYNTHESIS, CHARACTERIZATION, AND ANTIBACTERIAL STUDY OF ZINC OXIDE-GRAPHENE NANOCOMPOSITES

Graphene Optoelectronics: Synthesis, ..

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Nanoma Synthesis, Properties, ..

Xiao W, Zhang YH, Liu BT. Raspberrylike SiO2@reduced graphene oxide@AgNP composite microspheres with high aqueous dispersity and excellent catalytic activity. ACS Appl Mater Interfaces 2005;7(11):6041-6. 19. Xiao W, Zhang Y, Tian L, Liu H, Liu B, Pu Y. Facile synthesis of reduced graphene oxide/titania compositehollow microspheres based on sonication-assisted interfacialself-assembly of tiny graphene oxide sheets and the photocatalytic property. J Alloys Compounds 2016;665(25):21-30.

Graphene optoelectronics : synthesis, characterization, properties, and applications

Journal of Nanoscience and Nanotechnology

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Graphene-based materials : synthesis, characterization, properties, and applications ..

Hua Zhang - Nanyang Technological University, Singapore

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 oxide-modified ZnO particles: synthesis, characterization, and antibacterial properties

mechanical and optical properties

Another avenue for magnetic nanoparticles is the development of magnetically recoverable catalysts. In this case, magnetic nanoparticles can be synthesized in the presence of functional capping molecules such as polyphenylenepyridyl dendrons or thermally stable polymers (collaboration with Dr. Zinaida Shifrina's group from A.N. Nesmeyanov Institute of Organoelement Compounds of Russian Academy of Sciences, Moscow, Russia) bearing functional groups. Such dendrons/polymer shells can stabilize catalytic species on top of magnetic nanoparticles, and allow for easy magnetic separation. The graphic below shows the STEM EDS map and a schematic representation of Zn-containing magnetic oxide nanoparticle stabilized by polyphenylquinoxaline. The catalytic testing in syngas conversion to methanol demonstrated outstanding catalytic properties of Zn-containing magnetic oxides, whose activities are dependent on the Zn loading. Repeat experiments carried out with the best catalyst after magnetic separation showed remarkable catalyst stability even after five consecutive catalytic runs.