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Alexander Kamyshny

Researcher at Hebrew University of Jerusalem

Publications -  83
Citations -  5696

Alexander Kamyshny is an academic researcher from Hebrew University of Jerusalem. The author has contributed to research in topics: Nanoparticle & Silver nanoparticle. The author has an hindex of 30, co-authored 81 publications receiving 4902 citations. Previous affiliations of Alexander Kamyshny include Moscow State University.

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Conductive Nanomaterials for Printed Electronics

TL;DR: This is a review on recent developments in the field of conductive nanomaterials and their application in printed electronics, with particular emphasis on inkjet printing of ink formulations based on metal nanoparticles, carbon nanotubes, and graphene sheets.
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Triggering the sintering of silver nanoparticles at room temperature.

TL;DR: It was discovered that silver nanoparticles behave as soft particles when they come into contact with oppositely charged polyelectrolytes and undergo a spontaneous coalescence process, even without heating, and using this finding in printing conductive patterns, enables achieving high conductivities even at room temperature.
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Metal-based Inkjet Inks for Printed Electronics

TL;DR: A review on applications of metal-based inkjet inks for printed electronics with a particular focus on inks con- taining metal nanoparticles, complexes and metallo-organic compounds is presented in this article.
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Copper Nanoparticles for Printed Electronics: Routes Towards Achieving Oxidation Stability

TL;DR: This paper provides a review on the synthesis of copper nanoparticles, mainly by wet chemistry routes, and their utilization in printed electronics.
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Conductive Inks with a “Built-In” Mechanism That Enables Sintering at Room Temperature

TL;DR: It was found that the new metallic ink leads to very high conductivities, by a single printing step: up to 41% of the conductivity of bulk silver was achieved, the highest reported Conductivity of a printed pattern that is obtained from nanoparticles at room temperature.