Search Results - "Hromádková, Jiřina"
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Electropolymerized polypyrrole/safranin-O films: Capacitance enhancement
Published in Polymer (Guilford) (16-09-2021)“…Polypyrrole (PPy) prepared in the presence of organic dyes has been recently studied due to its interesting morphology and electronic properties. This present…”
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2
Polyaniline Cryogels Supported with Poly(vinyl alcohol): Soft and Conducting
Published in Macromolecules (14-02-2017)“…The present contribution reports the single-step preparation of new type of soft macroporous conducting cryogels, a special type of hydrogels…”
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3
One-Step Accelerated Synthesis of Conducting Polymer/Silver Composites and Their Catalytic Reduction of Cr(VI) Ions and p -Nitrophenol
Published in Polymers (18-05-2023)“…In this paper, silver nitrate was used as an oxidant to prepare polyaniline, polypyrrole, and poly(3,4-ethylene dioxythiophene)/silver composites through a…”
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4
Cationic dyes as morphology-guiding agents for one-dimensional polypyrrole with improved conductivity
Published in Polymer (Guilford) (12-06-2019)“…Polypyrrole was prepared in the presence of cationic dyes, safranin and phenosafranin. The safranin supported the one-dimensional growth of polypyrrole,…”
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5
Influence of the type and concentration of oxidant on the photoacoustic response of polypyrrole nanoparticles for potential bioimaging applications
Published in Synthetic metals (01-01-2023)“…The photoacoustic response of polypyrrole particles was studied in relation to the type and amount of oxidant used for their synthesis by photoacoustic…”
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6
Preparation of Smart Surfaces Based on PNaSS@PEDOT Microspheres: Testing of E. coli Detection
Published in Sensors (Basel, Switzerland) (05-04-2022)“…The main task of the research is to acquire fundamental knowledge about the effect of polymer structure on the physicochemical properties of films. A novel…”
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7
Effect of graphite nanoplatelets on the structure and properties of PA6-elastomer nanocomposites
Published in European polymer journal (01-01-2014)“…[Display omitted] •Combination of reinforcement and structure-directing effect of graphite nanoplatelets.•Effective dispergation of graphite nanoplatelets…”
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8
Amphiphilic (di-)gradient copoly(2-oxazoline)s are potent amyloid fibril formation inhibitors
Published in Colloids and surfaces, B, Biointerfaces (01-10-2023)“…Motivation: Amyloidoses are diseases caused by the accumulation of normally soluble proteins in the form of insoluble amyloids, leading to the gradual…”
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9
Nanostructured poly(N-methyl pyrrole) with enhanced conductivity and capacitance
Published in Synthetic metals (01-11-2022)Get full text
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10
Effect of initial freezing temperature and comonomer concentration on the properties of poly(aniline-co-m-phenylenediamine) cryogels supported by poly(vinyl alcohol)
Published in Colloid and polymer science (01-03-2020)“…Poly(aniline- co - m -phenylenediamine) cryogels supported by poly(vinyl alcohol) were obtained by oxidative cryocopolymerization of aniline and m…”
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11
Enhancement of conductivity, mechanical and biological properties of polyaniline-poly(N-vinylpyrrolidone) cryogels by phytic acid
Published in Polymer (Guilford) (05-03-2021)“…Polyaniline-based cryogels were prepared by oxidative cryopolymerization in the presence of various concentrations of poly(N-vinylpyrrolidone) and phytic acid…”
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12
Effect of nanofiller on fibril formation in melt-drawn HDPE/PA6 microfibrillar composite
Published in Polymer engineering and science (01-09-2015)“…Effect of layered silicates on structure of microfibrillar composites (MFCs) with reinforcing PA6 fibrils formed in situ by melt drawing was studied. Clay was…”
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13
Double-Porous Polyaniline-Based Cryogels with Carbon Nanofibers for Supercapacitors
Published in ACS applied energy materials (22-04-2024)“…Polyaniline-poly(N-vinylpyrrolidone) cryogels/aerogels with carbon nanofibers (PANI–CNF–PVP) were prepared by oxidative cryopolymerization of aniline in…”
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14
Aerogels of Polypyrrole/Tannic Acid with Nanofibrillated Cellulose for the Removal of Hexavalent Chromium Ions
Published in Gels (22-06-2024)“…The preparation of conducting polymer aerogels is an effective strategy to produce innovative materials with enhanced physicochemical properties. Herein,…”
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15
Polypyrrole nanoparticles: control of the size and morphology
Published in Journal of polymer research (2020)“…A method of controlling the size and morphology of polypyrrole nanoparticles (PPy-NPs) is successfully developed by using the combination of various non-ionic…”
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16
Magnetic Polypyrrole-Gelatin-Barium Ferrite Cryogel as an Adsorbent for Chromium (VI) Removal
Published in Gels (01-10-2023)“…Polypyrrole-gelatin aerogels, containing magnetic barium ferrite (BaFe) particles, (PPy-G-BaFe) were synthesized by oxidative cryopolymerization and used as…”
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17
Nitrogen-containing carbon enriched with tungsten atoms prepared by carbonization of polyaniline
Published in Chemical papers (01-10-2021)“…Polyaniline (PANI) salts with tungstosilicic (TSA) and phosphotungstic acids (PTA) were prepared by reprotonation of PANI base. Partial protonation of the…”
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18
Catalytic activity of polypyrrole nanotubes decorated with noble-metal nanoparticles and their conversion to carbonized analogues
Published in Synthetic metals (01-04-2016)“…[Display omitted] •Polypyrrole nanotubes can be decorated with noble-metal nanoparticles.•Platinum, palladium, ruthenium and rhodium nanoparticles have been…”
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19
Method of Preparation of Soluble PEDOT: Self‐Polymerization of EDOT without Oxidant at Room Temperature
Published in Macromolecular chemistry and physics (01-09-2020)“…The preparation of soluble conducting polymers proceeds by the chemical oxidation method in the presence of water‐soluble polyelectrolytes. Among conducting…”
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20
Hydrophilic Copolymers with Hydroxamic Acid Groups as a Protective Biocompatible Coating of Maghemite Nanoparticles: Synthesis, Physico-Chemical Characterization and MRI Biodistribution Study
Published in Pharmaceutics (01-07-2023)“…Superparamagnetic iron oxide nanoparticles (SPION) with a "non-fouling" surface represent a versatile group of biocompatible nanomaterials valuable for medical…”
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