In this thesis, I attempted to prepare a composite material from graphene and natural rubber
latex with improved mechanical and electrical conductivity properties. To prepare the
graphene dispersions, I used various emulsifiers and subsequently verified the effectiveness
of the emulsifier and graphene dispersion in water using particle size analysis. I added latex
to the stable dispersions, homogenized the mixture using ultrasound, cast it into thin-film
moulds and dried it. Strip-shaped samples were used to measure electrical conductivity using the two-point method. Conductivity was measured using two different instruments, both leading to the same conclusion. The choice of emulsifier affects the quality of the film, while a higher graphene content improves electrical conductivity up to a certain point, beyond which it is no longer possible to form a homogeneous film. The mechanical properties of the composite material were measured using a tensile strength test. The results show that an excessively high graphene content deteriorates the homogeneity of the sample and its tensile strength.
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