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Dive into the research topics where László Kőrösi is active.

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Featured researches published by László Kőrösi.


Materials Science and Engineering: C | 2014

Improved cell activity on biodegradable photopolymer scaffolds using titanate nanotube coatings.

Szabolcs Beke; Rossella Barenghi; Balázs Farkas; Ilaria Romano; László Kőrösi; Silvia Scaglione; Fernando Brandi

The development of bioactive materials is in the premise of tissue engineering. For several years, surface functionalization of scaffolds has been one of the most promising approaches to stimulate cellular activity and finally improve implant success. Herein, we describe the development of a bioactive composite scaffold composed of a biodegradable photopolymer scaffold and titanate nanotubes (TNTs). The biodegradable photopolymer scaffolds were fabricated by applying mask-projection excimer laser photocuring at 308 nm. TNTs were synthesized and then spin-coated on the porous scaffolds. Upon culturing fibroblast cells on scaffolds, we found that nanotubes coating affects cell viability and proliferation demonstrating that TNT coatings enhance cell growth on the scaffolds by further improving their surface topography.


Materials Science and Engineering: C | 2013

Titanate nanotube coatings on biodegradable photopolymer scaffolds

Szabolcs Beke; László Kőrösi; Alice Scarpellini; F Anjum; Fernando Brandi

Rigid, biodegradable photopolymer scaffolds were coated with titanate nanotubes (TNTs) by using a spin-coating method. TNTs were synthesized by a hydrothermal process at 150 °C under 4.7 bar ambient pressure. The biodegradable photopolymer scaffolds were produced by mask-assisted excimer laser photocuring at 308 nm. For scaffold coating, a stable ethanolic TNT sol was prepared by a simple colloid chemical route without the use of any binding compounds or additives. Scanning electron microscopy along with elemental analysis revealed that the scaffolds were homogenously coated by TNTs. The developed TNT coating can further improve the surface geometry of fabricated scaffolds, and therefore it can further increase the cell adhesion.


Colloids and Surfaces A: Physicochemical and Engineering Aspects | 2006

Preparation and investigation of structural and photocatalytic properties of phosphate modified titanium dioxide

László Kőrösi; Imre Dékány


Applied Catalysis B-environmental | 2007

Structural properties and photocatalytic behaviour of phosphate-modified nanocrystalline titania films

László Kőrösi; A. Oszkó; Gábor Galbács; Andre Richardt; Volker Zöllmer; Imre Dékány


Colloids and Surfaces A: Physicochemical and Engineering Aspects | 2005

Preparation and characterization of SnO2 nanoparticles of enhanced thermal stability: The effect of phosphoric acid treatment on SnO2·nH2O

László Kőrösi; Szilvia Papp; Vera Meynen; Pegie Cool; Etienne F. Vansant; Imre Dékány


Thin Solid Films | 2008

Structural and optical properties of pulsed laser deposited V2O5 thin films

Szabolcs Beke; S. Giorgio; László Kőrösi; L. Nánai; W. Marine


Colloids and Surfaces A: Physicochemical and Engineering Aspects | 2008

Photocatalytic activity of silver-modified titanium dioxide at solid-liquid and solid-gas interfaces

László Kőrösi; Szilvia Papp; Judit Ménesi; Erzsébet Illés; Volker Zöllmer; André Richardt; Imre Dékány


Applied Surface Science | 2009

XRD and XPS analysis of laser treated vanadium oxide thin films

Szabolcs Beke; László Kőrösi; Szilvia Papp; A. Oszkó; L. Nánai


Thin Solid Films | 2011

Preparation of transparent conductive indium tin oxide thin films from nanocrystalline indium tin hydroxide by dip-coating method

László Kőrösi; Szilvia Papp; Imre Dékány


Colloids and Surfaces A: Physicochemical and Engineering Aspects | 2012

Synthesis and characterization of Ag/Au alloy and core(Ag)–shell(Au) nanoparticles

Edit Csapó; A. Oszkó; Erika Varga; Ádám Juhász; Norbert Buzás; László Kőrösi; Andrea Majzik; Imre Dékány

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Szilvia Papp

Hungarian Academy of Sciences

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Szabolcs Beke

Istituto Italiano di Tecnologia

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Fernando Brandi

Istituto Italiano di Tecnologia

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