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Vladimir V. Volkov

Vladimir V. Volkov

Overview

Vladimir V. Volkov is affiliated with the Russian Academy of Sciences in the Russian Federation. Their scientific work spans the fields of Engineering and Materials Science, with a particular focus on several subfields including Mechanical Engineering, Water Science and Technology, Electrical and Electronic Engineering, Biomedical Engineering, and Materials Chemistry.

Their research mainly addresses topics related to membrane technologies and polymer chemistry. The key areas of study associated with their work include:

  • Membrane Separation and Gas Transport
  • Membrane Separation Technologies
  • Fuel Cells and Related Materials
  • Membrane-based Ion Separation Techniques
  • Synthesis and properties of polymers
  • Covalent Organic Framework Applications
  • Graphene research and applications

Volkov has authored multiple papers on these subjects. Recent publications highlight advances in polymeric membranes and their applications in separation processes. Notable papers include:

  • Polymeric Membranes for Oil-Water Separation: A Review, 2022, Polymers
  • Polyalkylmethylsiloxanes composite membranes for hydrocarbon/methane separation: Eight component mixed-gas permeation properties, 2020, Separation and Purification Technology
  • Influence of side chains assembly on the structure and transport properties of comb-like polysiloxanes in hydrocarbon separation, 2021, Materials Today Chemistry
  • Spinning of Polysulfone Hollow Fiber Membranes Using Constant Dope Solution Composition: Viscosity Control via Temperature, 2022, Membranes
  • Mitigation of Physical Aging of Polymeric Membrane Materials for Gas Separation: A Review, 2023, Membranes

The frequent collaboration network of Volkov includes coauthors such as И. Л. Борисов, Е. А. Grushevenko, А. В. Волков, D. N. Matveev, and Т. С. Анохина. These collaborators have contributed significantly to their joint publications, working in close partnership across multiple projects.

Volkov's work has been published in several recurring venues. These include:

  • Membranes and Membrane Technologies
  • Polymers
  • Membranes
  • Мембраны и Мембранные технологии
  • EKONOMIKA I UPRAVLENIE PROBLEMY RESHENIYA

Best Publications

  • Uniqueness of ab initio shape determination in small-angle scattering

    Vladimir V. Volkov;Dmitri I. Svergun

  • ATSAS 2.1, a program package for small‐angle scattering data analysis

    Petr V. Konarev;Maxim V. Petoukhov;Vladimir V. Volkov;Dmitri I. Svergun

  • Extraction of butanol from aqueous solutions by pervaporation through poly(1-trimethylsilyl-1-propyne)

    A.G Fadeev;Ya.A Selinskaya;S.S Kelley;M.M Meagher

  • Gas and vapor permeation and sorption in poly (trimetylsilylpropyne)

    N.A Platé;A.K Bokarev;N.E Kaliuzhnyi;E.G Litvinova

  • Prospects of Membrane Science Development

    P. Yu. Apel;O. V. Bobreshova;A. V. Volkov;V. V. Volkov

  • Aggregation state and mesophase structure of comb-shaped polymers with fluorocarbon side groups

    Vladimir V. Volkov;Nicolai A. Platé;Atsushi Takahara;Tisato Kajiyama

  • Solvent nanofiltration through high permeability glassy polymers: Effect of polymer and solute nature

    Sergey Tsarkov;Valery Khotimskiy;Peter M. Budd;Vladimir Volkov

  • Fouling of poly[-1-(trimethylsilyl)-1-propyne] membranes in pervaporative recovery of butanol from aqueous solutions and ABE fermentation broth

    A.G. Fadeev;M.M. Meagher;S.S. Kelley;V.V. Volkov

  • Solubility of CO2 and CH4 in Ionic Liquids: Ideal CO2/CH4 Selectivity

    Mahinder Ramdin;Aris Amplianitis;Stepan Bazhenov;Alexey Volkov

  • High permeable PTMSP/PAN composite membranes for solvent nanofiltration

    Alexey V. Volkov;Victor V. Parashchuk;Dimitrios F. Stamatialis;Valery S. Khotimsky

  • Observation of the decay $\Lambda^0_b ightarrow\psi(2S)p\pi^-$

    Roel Aaij;Gregory Ciezarek;Paula Collins;Ulrich Straumann

  • Effect of yeast fermentation by-products on poly[1-(trimethylsilyl)-1-propyne] pervaporative performance

    A.G. Fadeev;S.S. Kelley;J.D. McMillan;Ya.A. Selinskaya

  • Robust high-permeance PTMSP composite membranes for CO2 membrane gas desorption at elevated temperatures and pressures

    G.A. Dibrov;V.V. Volkov;V.P. Vasilevskya;A.A. Shutova

  • Membranes and nanotechnologies

    V. V. Volkov;B. V. Mchedlishvili;V. I. Roldugin;S. S. Ivanchev

  • Novel PTMSP-based membranes containing elastomeric fillers: Enhanced 1-butanol/water pervaporation selectivity and permeability

    Ilya L. Borisov;Alexander O. Malakhov;Valery S. Khotimsky;Elena G. Litvinova

  • FREE VOLUME STRUCTURE AND TRANSPORT PROPERTIES OF GLASSY POLYMERS-MATERIALS FOR SEPARATING MEMBRANES

    Vladimir V Volkov

  • Structural Analysis of Influenza A Virus Matrix Protein M1 and Its Self-Assemblies at Low pH

    Eleonora V. Shtykova;Lyudmila A. Baratova;Natalia V. Fedorova;Victor A. Radyukhin

  • Study of glassy polymers fractional accessible volume (FAV) by extended method of hydrostatic weighing: Effect of porous structure on liquid transport

    Alexey Yushkin;Alexey Grekhov;Samira Matson;Maxim Bermeshev

  • Effects of synthesis conditions on the pervaporation properties of poly[1-(trimethylsilyl)-1-propyne] useful for membrane bioreactors

    V. V. Volkov;A. G. Fadeev;V. S. Khotimsky;E. G. Litvinova

  • Poly[1-(trimethylsilyl)-1-propyne] as a solvent resistance nanofiltration membrane material

    A.V. Volkov;Dimitrios Stamatialis;V.S. Khotimsky;V.V. Volkov

Frequent Co-Authors

Marina Artuso
Marina Artuso Syracuse University

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