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Dive into the research topics where V.M. Gun'ko is active.

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Featured researches published by V.M. Gun'ko.


Journal of Colloid and Interface Science | 2003

Structural characteristics of modified activated carbons and adsorption of explosives

W. Tomaszewski; V.M. Gun'ko; J. Skubiszewska-Zięba; R. Leboda

Several series of activated carbons prepared by catalytic and noncatalytic gasification and subsequent deposition of pyrocarbon by pyrolysis of methylene chloride or n-amyl alcohol were studied by FTIR, chromatography, and adsorption methods using nitrogen and probe organics (explosives). The relationships between the textural characteristics of carbon samples and the recovery rates (eta) of explosives on solid-phase extraction (SPE) using different solvents for their elution after adsorption were analyzed using experimental and quantum chemical calculation results. The eta values for nitrate esters, cyclic nitroamines, and nitroaromatics only partially correlate with different adsorbent parameters (characterizing microporosity, mesoporosity, pore size distributions, etc.), polarity of eluting solvents, or characteristics of probe molecules, since there are many factors strongly affecting the recovery rates. Some of the synthesized carbons provide higher eta values than those for such commercial adsorbents as Hypercarb and Envicarb.


Journal of Colloid and Interface Science | 2003

Study of interaction of proteins with fumed silica in aqueous suspensions by adsorption and photon correlation spectroscopy methods.

V.M. Gun'ko; I.V Mikhailova; V.I. Zarko; I.I Gerashchenko; N.V Guzenko; W. Janusz; R. Leboda; S. Chibowski

The interaction of fumed silica A-300 (S(BET) = 297 m2 g(-1)) with bovine serum albumin (prepared by different methods), ovalbumin, human hemoglobin, and gelatin as a function of pH, salinity, and concentrations of components in aqueous medium was studied by adsorption and photon correlation spectroscopy (PCS) methods. Comparison of equilibrium (incubation time t(i) approximately 1 h) adsorption of proteins on A-300, minute (t(i) approximately 1 min) flocculation rate, and the particle size distributions measured by the PCS method shows different rearrangement of particle swarms depending on pH, salinity, and concentration of proteins, especially at pH close to IEP of silica or proteins. The electrokinetic mobility of protein/silica swarms is greater than that of individual components at pH far from the IEP of proteins. Changes in the Gibbs free energy (DeltaG) on protein adsorption depend on pH (-DeltaG is minimal at pH 2, close to the IEP of silica, and maximal at pH between the IEP of protein and silica), concentration (-DeltaG is maximal at C(p) between 1 and 6 mg/ml), type of proteins, and their preparation technique.


Journal of Colloid and Interface Science | 2003

Structural and adsorptive properties of activated carbons prepared by carbonization and activation of resins.

R. Leboda; J. Skubiszewska-Zięba; W. Tomaszewski; V.M. Gun'ko

Four activated carbons (S1-S4) possessing different structural characteristics were prepared by carbonization of commercial resins (used for ion exchange) and subsequent activation. Their textural parameters were determined on the basis of nitrogen adsorption-desorption at 77.4 K, analyzed by applying several local and overall adsorption isotherm equations. The nature of carbon surface functionalities was analyzed by FTIR spectroscopy. The GC and solid-phase extraction (SPE) techniques were applied to study the influence of the texture of carbonaceous materials on their adsorptive properties. The adsorption efficiency of synthesized carbons with respect to alkylhalides used as probe compounds in the GC measurements varied over a range from 28% (C(2)H(3)Cl(3)/S2) to 85% (CHBr(3)/S1) depending on the type of adsorbates and adsorbents. The concentrating efficiency of these carbons in SPE of explosive materials changed over a larger range from 12% (trinitroglycerin/S4) and 13% (trinitrotoluene/S2) up to 100% (octogen/S1). Active carbon prepared using Zerolite 225x8 as a precursor demonstrated better results than other carbons in two types of adsorption with average values of the efficiency of 75.4% for explosives and 60.8% for alkylhalides.


Langmuir | 2007

Adsorption, NMR, and thermally stimulated depolarization current methods for comparative analysis of heterogeneous solid and soft materials.

V.M. Gun'ko; V.V. Turov; R. Leboda; Vladimir I. Zarko; J. Skubiszewska-Zięba; B. Charmas


Journal of Colloid and Interface Science | 2002

Influence of organics on the structure of water adsorbed on activated carbons.

V.V. Turov; V.M. Gun'ko; R. Leboda; Teresa J. Bandosz; J. Skubiszewska-Zięba; D. Palijczuk; Waldemar Tomaszewski; S. Ziętek


Langmuir | 1999

Distribution effect of the second phase in disperse silica/X oxides (X = Al2O3, TiO2, GeO2) on their surface properties

V.M. Gun'ko; Vladimir I. Zarko; V.V. Turov; R. Leboda; Emil Chibowski


Journal of Colloid and Interface Science | 2000

Surface properties of mesoporous carbon-silica gel adsorbents

R. Leboda; V.V. Turov; B. Charmas; J. Skubiszewska-Zięba; V.M. Gun'ko


Langmuir | 2004

Structural characteristics of activated carbons and ibuprofen adsorption affected by bovine serum albumin.

M. Melillo; V.M. Gun'ko; S.R. Tennison; Lyubov I. Mikhalovska; Gary Phillips; J.G. Davies; Oleksandr P. Kozynchenko; D. J. Malik; and M. Streat; Sergey V. Mikhalovsky


Journal of Colloid and Interface Science | 2000

Highly Dispersed X/SiO2 and C/X/SiO2 (X=Alumina, Titania, Alumina/Titania) in the Gas and Liquid Media

V.M. Gun'ko; V.I. Zarko; R. Leboda; M. Marciniak; W. Janusz; S. Chibowski


Journal of Colloid and Interface Science | 2002

Porous structure of activated carbons and tert-butylbenzene breakthrough dynamics.

D. Palijczuk; V.M. Gun'ko; R. Leboda; J. Skubiszewska-Ziȩba; S. Ziȩtek

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R. Leboda

Maria Curie-Skłodowska University

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J. Skubiszewska-Zięba

Maria Curie-Skłodowska University

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W. Janusz

Maria Curie-Skłodowska University

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B. Charmas

Maria Curie-Skłodowska University

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S. Chibowski

Maria Curie-Skłodowska University

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V.V. Turov

National Academy of Sciences of Ukraine

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J. Skubiszewska-Ziȩba

Maria Curie-Skłodowska University

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M. Marciniak

Maria Curie-Skłodowska University

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