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Gennady P Kopitsa

Explore the profile of Gennady P Kopitsa including associated specialties, affiliations and a list of published articles. Areas
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Articles 10
Citations 18
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Recent Articles
1.
Kottsov S, Kopitsa G, Baranchikov A, Pavlova A, Khamova T, Badulina A, et al.
Langmuir . 2024 Oct; 40(45):23962-23972. PMID: 39475052
Ionogels were obtained by impregnating Aerosil A380 with 1-methyl-3-octyl-imidazolium tetrafluoroborate (OMIM BF) ionic liquid (IL). The IL content of the ionogels varied from 16.3 to 79.9 mol %. There was...
2.
Sipyagina N, Vlasenko N, Malkova A, Kopitsa G, Gorshkova Y, Kottsov S, et al.
Molecules . 2024 Apr; 29(8). PMID: 38675688
A series of silica-based aerogels comprising novel bifunctional chelating ligands was prepared. To produce target aerogels, two aminosilanes, namely (3-aminopropyl)trimethoxysilane (APTMS) and -(2-aminoethyl)-3-aminopropyltrimethoxysilane (AEAPTMS), were acylated by natural amino acids...
3.
Smyslov R, Emelyanov A, Ezdakova K, Korzhova S, Gorshkova Y, Khripunov A, et al.
Biomimetics (Basel) . 2023 Nov; 8(7). PMID: 37999161
New composite hydrogels (CH) based on bacterial cellulose (BC) and poly-1-vinyl-1,2,4-triazole (PVT) doped with orthophosphoric acid (oPA), presenting interpenetrating polymeric networks (IPN), have been synthesized. The mesoscopic study of the...
4.
Kottsov S, Shmelev M, Baranchikov A, Kiskin M, Sharipov A, Efimov N, et al.
Molecules . 2023 Jan; 28(1). PMID: 36615607
The chemical immobilization of cobalt(II) ions in a silica aerogel matrix enabled the synthesis of the first representative example of aerogel-based single-ion magnets. For the synthesis of the lyogels, methyl-trimethoxysilane...
5.
Bugrov A, Gorshkova Y, Ivankova E, Kopitsa G, Pavlova A, Popova E, et al.
Polymers (Basel) . 2022 Oct; 14(19). PMID: 36236094
A series of multiblock polyurethane-ureas (PUU) based on polycaprolactone diol (PCL) with a molecular mass of 530 or 2000 g/mol, as well as hard segments of different lengths and structures,...
6.
Golovkina D, Zhurishkina E, Ivanova L, Baranchikov A, Sokolov A, Bobrov K, et al.
Life (Basel) . 2020 Dec; 10(12). PMID: 33260571
Microbially induced CaCO precipitation (MICP) is considered as an alternative green technology for cement self-healing and a basis for the development of new biomaterials. However, some issues about the role...
7.
Kozlova T, Baranchikov A, Kozlov D, Gavrikov A, Kopitsa G, Yapryntsev A, et al.
ACS Omega . 2020 Jul; 5(28):17592-17600. PMID: 32715244
Ceric hydrogen phosphate gels possess a very unique spatial organization, being nearly amorphous materials with a fibrous structure. Using a sol-gel approach, we succeeded in preparing bulky gels containing as...
8.
Ivanova L, Ustinovich K, Khamova T, Eneyskaya E, Gorshkova Y, Tsvigun N, et al.
Materials (Basel) . 2020 May; 13(9). PMID: 32369952
The crystal and supramolecular structure of the bacterial cellulose (BC) has been studied at different stages of cellobiohydrolase hydrolysis using various physical and microscopic methods. Enzymatic hydrolysis significantly affected the...
9.
Kozlov D, Shcherbakov A, Kozlova T, Angelov B, Kopitsa G, Garshev A, et al.
Molecules . 2020 Jan; 25(1). PMID: 31905983
Tungsten oxide-based bulk and nanocrystalline materials are widely used as photocatalytic and photo- and electrochromic materials, as well as materials for biomedical applications. In our work, we focused our attention...
10.
Bugrov A, Zavialova A, Smyslov R, Ananeva T, Vlasova E, Mokeev M, et al.
Luminescence . 2018 Apr; 33(5):837-849. PMID: 29683250
Spherical nanoparticles of ZrO with 2 and 10 mol% EuO up to 20 nm size were prepared by the method of hydrothermal synthesis for luminescent functionalization of the polymer-inorganic nanocomposites...