Simple Route to Increase Electrical Conductivity and Optical Transmittance in Graphene/Silver Nanoparticles Hybrid Suspensions

Author:

Danilov Egor A.1,Veretennikov Mikhail1,Dronova Maria12,Kalyakin Timofey13ORCID,Stepashkin Andrey A.4ORCID,Tcherdyntsev Victor V.4ORCID,Samoilov Vladimir1

Affiliation:

1. Research Institute for Graphite-Based Structural Materials “NIIgrafit” (JSC “NIIgrafit”), Elektrodnaya Street 2, Moscow 111524, Russia

2. Department of Special Machinery, Bauman Moscow State Technical University, 2nd Baumanskaya Str. 5, Moscow 105005, Russia

3. Faculty of Technology of Oil & Gas Chemistry and Polymer Materials, D. Mendeleev University of Chemical Technology of Russia, Miusskaya Sq. 9, Moscow 125047, Russia

4. Laboratory of Functional Polymer Materials, National University of Science and Technology “MISIS”, Leninskii prosp, 4, Moscow 119049, Russia

Abstract

Electrical and optical properties of graphene/silver nanoparticles hybrid suspensions intended for use in inkjet printing technologies were studied. Few-layered graphene particles were manufactured via a direct ultrasonic-assisted liquid-phase exfoliation route in water/surfactant system, whereas silver nanoparticles were synthetized using a polyol process. Hybrid suspensions for graphene/silver nanoparticles mixtures showed significant reduction in mean particle size while electrical conductivity remained almost intact even after thorough centrifugation. Structuring effects in mixed colloids were very pronounced as both electrical conductivity and optical transmission showed maxima at 65 wt.% graphene. Suspensions with conductivities above 300 μSm/cm, much higher than previously reported, were obtained, and resulted in the manufacturing of films with less than 10% optical absorption throughout the visible region. These samples did not demonstrate absorption peaks attributed to silver nanoparticles’ surface plasmon resonance, which is suitable for transparent electrode applications. Suspension properties at optimal composition (65 wt.% graphene) are very promising for printed electronics as well as transparent conductive coating applications. In the paper, we establish that the optimal suspension composition matches that of the film; therefore, more attention should be paid to carefully studying electrically conductive suspensions.

Funder

Ministry of science and higher education of Russia

state program of basic research “For the long-term development and ensuring the competitiveness of society and the state”

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

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