Search Results - "Vladkova, T."
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Some possibilities to reduce the biofilm formation on transparent siloxane coatings
Published in Colloids and surfaces, B, Biointerfaces (01-04-2013)“…[Display omitted] ► Restrictions in the use of biocides stimulate development of ecology friendly approaches to inhibition the biofilm formation. ► This paper…”
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2
Surface modification of silicone rubber with poly(ethylene glycol) hydrogel coatings
Published in Journal of applied polymer science (05-05-2004)“…Hydrogel coatings of monoacrylated poly(ethylene glycol) (PEG) methyl ethers of different molecular weights were attached to silicon rubber surfaces and…”
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3
Preparation, characterization, and cellular interactions of collagen-immobilized PDMS surfaces
Published in Journal of applied polymer science (05-10-2008)“…Multistep procedure to biofunctionalization of (poly)dimethylsiloxane (PDMS) surfaces is present here, including plasma-based Ar⁺ beam treatment; acrylic acid…”
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4
Topography characterization and initial cellular interaction of plasma-based Ar⁺ beam-treated PDMS surfaces
Published in Journal of applied polymer science (05-03-2009)“…Assuming that the existence of an ion-flow in the plasma volume could strength the surface modifying effect, including its durability, a parallel plate reactor…”
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5
Wood flour: New filler for the rubber processing industry. IV. Cure characteristics and mechanical properties of natural rubber compounds filled by non-modified or corona treated wood flour
Published in Journal of applied polymer science (05-07-2006)“…It is presented here how some cure characteristics and mechanical properties of rubber compounds based on nonpolar rubber, natural rubber (NR), are affected by…”
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6
Surface modification of polymeric ultrafiltration membranes I. Effect of atmospheric pressure barrier discharge in air onto some characteristics of polyacrylonitrile ultrafiltration membranes
Published in High energy chemistry (01-07-2012)“…Atmospheric pressure plasma surface modification of polyacrilonitrile ultrafiltration membranes is presented here aimed at improvement of some basic working…”
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7
Wood flour: A new filler for the rubber processing industry. I. Cure characteristics and mechanical properties of wood flour-filled NBR and NBR/PVC compounds
Published in Journal of applied polymer science (05-12-2003)“…In this study, conifer wood flour was evaluated as a filler to NBR or NBR/PVC compounds studying it influence on their cure characteristics and mechanical…”
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8
Ion-plasma modification of polyvinylchloride microfiltration membranes
Published in Journal of applied polymer science (28-11-2003)“…Here we present how the surface and some filtration properties of PVC microfiltration membranes are affected by controlled and well‐defined modification by…”
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9
Wood flour: A new filler for the rubber processing industry. II. Cure characteristics and mechanical properties of NBR compounds filled with corona-treated wood flour
Published in Journal of applied polymer science (15-01-2004)“…Corona‐treated wood flour was evaluated as a filler for NBR (nitrile butadiene rubber) compounds by studying its influence on their cure characteristics and…”
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10
Modification of poly(styrene) by reactive blending with nitrificated rubber
Published in Journal of applied polymer science (24-01-2001)“…A possible way to obtain modified poly(styrene) (PS) with a new complex of properties: 2–3 times higher impact resistance in a combination with significantly…”
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11
Wood flour: A new filler for the rubber processing industry. III. Cure characteristics and mechanical properties of nitrile butadiene rubber compounds filled by wood flour in the presence of phenol-formaldehyde resin
Published in Journal of applied polymer science (05-04-2004)“…Nonmodified and corona‐activated conifer wood flour was evaluated as filler to nitrile butadiene rubber (NBR) compounds containing different amounts of…”
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12
Effect of dihydrogen phosphate of ε-aminocaproic acid on isoprene rubber compounds
Published in Polymer international (01-07-2004)“…The multifunctional effect of the dihydrogen phosphate of ε‐aminocaproic acid (DHPh ε‐ACA) on isoprene rubber compounds is presented in this paper. DHPh ε‐ACA…”
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13
Preparation of PEG-coated surfaces and a study for their interaction with living cells
Published in Journal of biomaterials science. Polymer ed. (01-01-1999)“…Cell-biomaterial interaction is of great importance for the development of bioinert as well as of hybrid surfaces. This study represents our results of human…”
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14
Plasma based Ar+ beam assisted poly(dimethylsiloxane) surface modification
Published in Nuclear instruments & methods in physics research. Section B, Beam interactions with materials and atoms (01-07-2005)“…Plasma based Ar+ beam performed in RF (13.56MHz) low-pressure (200mTorr) glow discharge (at 100W, 1200W and 2500W) with a serial capacitance was employed for…”
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15
Surface modification of polymeric ultrafiltration membranes: III. Effect of plasma-chemical surface modification onto some characteristics of polyacrylonitrile ultrafiltration membranes
Published in High energy chemistry (01-11-2013)“…Plasma-chemical surface modification of polyacrilonitrile ultrafiltration membranes is presented here including surface pre-activation by treatment in cold…”
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16
Effect of dihydrogen phosphate of e-aminocaproic acid on isoprene rubber compounds
Published in Polymer international (01-07-2004)“…The multifunctional effect of the dihydrogen phosphate of *e-aminocaproic acid (DHPh *e-ACA) on isoprene rubber compounds is presented in this paper. DHPh…”
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17
Wood flour: A new filler for the rubber processing industry.III: Cure characteristics and mechanical properties of nitrile butadiene rubber compounds filled by wood flour in the presence of phenol-formaldehyde resin
Published in Journal of applied polymer science (2004)Get full text
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18
Mechanically Stable Hydrophilic Films Based on Oxialkylated Macromers Polymerizable by UV Irradiation
Published in Polymers for advanced technologies (01-06-1997)“…The preparation and characterization of films based on ethoxylated and acrylated triethanolamine or ϵ‐aminecaprolactam or acrylated block copolymer of ethylene…”
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