Igor Erukhimovich

Affiliations: 
Moscow State University, Moskva, Moscow, Russia 
Area:
polymer theory
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"Igor Erukhimovich"
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Publications

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Kriksin Y, Erukhimovich I. (2020) Macrophase versus Microphase Separation in Solutions of Block Copolymers: Lifshitz Line in the Energetic Parameter's Space Macromolecular Theory and Simulations. 2000044
Erukhimovich I, Kriksin Y. (2019) Thermodynamics of 3D diamond-like epitaxial (film) morphologies on 1D modulated substrate: Weak crystallization theory. The Journal of Chemical Physics. 150: 224701
Erukhimovich I, Kriksin Y, Brinke Gt. (2017) Ordering Lamellar-Forming Copolymer Thin Films in 3D Bicontinuous Morphologies via Lamellar Patterned Substrate Macromolecules. 50: 3923-3933
Kriksin Y, Erukhimovich I, Brinke Gt. (2016) Self‐Consistent Field Theory within Hildebrand Approximation: Microphase Separation in Gradient Copolymers Macromolecular Theory and Simulations. 25: 466-474
Erukhimovich I, Kriksin Y, Ten Brinke G. (2015) Diamond-forming block copolymers and diamond-like morphologies: A new route toward efficient block copolymer membranes Macromolecules. 48: 7909-7922
Markov V, Kriksin Y, Erukhimovich I, et al. (2013) Perpendicular lamellar-in-lamellar and other planar morphologies in A-b-(B-b-A)2-b-C and (B-b-A)2-b-C ternary multiblock copolymer melts. The Journal of Chemical Physics. 139: 084906
Glagoleva A, Erukhimovich I, Vasilevskaya V. (2013) Void Microstructuring in Lamellar Phase of Amphiphilic Macromolecules Macromolecular Theory and Simulations. 22: 31-35
Erukhimovich I, Kriksin Y, Ten Brinke G. (2012) The diamond and other non-conventional morphologies in two-scale multiblock AB copolymers Soft Matter. 8: 2159-2169
Erukhimovich I, Theodorakis PE, Paul W, et al. (2011) Mesophase formation in two-component cylindrical bottlebrush polymers. The Journal of Chemical Physics. 134: 054906
Erukhimovich I, Johner A, Joanny JF. (2010) Depletion of ideal polymer chains near a spherical colloid particle beyond the Dirichlet boundary conditions. The European Physical Journal. E, Soft Matter. 31: 115-24
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