С33а Нанофизика. Нанотехнология/Nanophysics. Nanotechnology

 

249. Annamalai, K. Insight into the Investigation on Nanostructured Defect Pyrochlore Bi&sub(2-x)Fe&sub(x)WO&sub(6) and Its Photocatalytic Degradation of Mixed Cationic Dyes / K.Annamalai, S.E.Kichanov // Materials Science in Semiconductor Processing [Electronic resource]. – 2022. – Vol.150. – P.106961. – Bibliogr.:57.
https://doi.org/10.1016/j.mssp.2022.106961

250. Apel, P. Time-Resolved Pressure-Induced Electric Potential in Nanoporous Membranes: Measurement and Mechanistic Interpretation / P.Apel, S.Koter, A.Yaroshchuk // Journal of Membrane and Science [Electronic resource]. – 2022. – Vol.653. – P.120556. – Bibliogr.:46.
https://doi.org/10.1016/j.memsci.2022.120556

251. Avdeev, M.M. Synthesis of Polyacrylamide Gel Nanolayers on Oxidized Silicon Surface for Use as Smart Coatings with Controlled Release of Antiseptics / M.M.Avdeev, Ye.N.Kosiachkin, O.P.Artykulnyi, Yu.E.Gorshkova, [a.o.] // Condensed Matter Research at the IBR-2. International Conference, Dubna, April 25-29, 2022 : Programme and Abstracts / Ed.: V.S.Smirnova. – Dubna : JINR, 2022. – P.144-145. – Bibliogr.:1. – (JINR ; E3-2022-17).
http://inis.jinr.ru/sl/ntblib/cmr_2022-144.pdf

252. Bica, I. Effects of Electric and Magnetic Fields on Dielectric and Elastic Properties of Membranes Composed of Cotton Fabric and Carbonyl Iron Microparticles / I.Bica, M.Balasoiu, P.Sfirloaga // Results in Physics [Electronic resource]. – 2022. – Vol.35. – P.105332. – Bibliogr.:45.
https://doi.org/10.1016/j.rinp.2022.105332

253. Bica, I. Electrical Devices Based on Hybrid Membranes with Mechanically and Magnetically Controllable, Resistive, Capacitive and Piezoelectric Properties / I.Bica, E.M.Anitas // Smart Materials and Structures [Electronic resource]. – 2022. – Vol.31, No.4. – P.045001.
https://doi.org/10.1088/1361-665x/ac4ea7

254. Bica, I. Magnetic Field and Microstructural Effects on the Electrical Capacitance and Resistance of a Quadrupole Electrical Capacitor Based on Cotton Fabrics and Carbonyl Iron Microparticles / I.Bica, E.M.Anitas // Smart Materials and Structures [Electronic resource]. – 2022. – Vol.31, No.12. – P.125018. – Bibliogr.:32.
https://doi.org/10.1088/1361-665x/ac9ef2

255. Cazacu, N. Biogenic Ferrihydrite Nanoparticles Produced by Klebsiella oxytoca: Characterization, Physicochemical Properties and Bovine Serum Albumin Interactions / N.Cazacu, M.Balasoiu, O.L.Orelovich, Yu.S.Kovalev, A.V.Rogachev, [a.o.] // Nanomaterials [Electronic resource]. – 2022. – Vol.12, No.2. – P.249. – Bibliogr.:61.
https://doi.org/10.3390/nano12020249

256. Chilom, C.G. Biogenic Ferrihydrite Nanoparticles - Serum Proteins Complexes as Biocompatible Systems for Medical Applications / C.G.Chilom, M.Balasoiu, A.Rogachev, O.Orelovich, V.Turchenko, A.Kuklin, [a.o.] // Condensed Matter Research at the IBR-2. International Conference, Dubna, April 25-29, 2022 : Programme and Abstracts / Ed.: V.S.Smirnova. – Dubna : JINR, 2022. – P.71-72. – Bibliogr.:5. – (JINR ; E3-2022-17).
http://inis.jinr.ru/sl/ntblib/cmr_2022-p71.pdf

257. Daulbayev, C. Effect of Graphene Oxide/Hydroxyapatite Nanocomposite on Osteogenic Differentiation and Antimicrobial Activity / C.Daulbayev, O.Daulbayev [et al.] // Surfaces and Interfaces [Electronic resource]. – 2022. – Vol.28. – P.101683. – Bibliogr.:50.
https://doi.org/10.1016/j.surfin.2021.101683

258. Doroshkevich, A.S. Electric Energy Storage Effect in Hydrated ZrO&sub(2)-Nanostructured System / A.S.Doroshkevich, T.Yu.Zelenyak, A.K.Kirillov, A.A.Tatarinova, V.I.Bodnarchuk, M.Balasoiu, M.N.Mirzayev, A.A.Nabiyev, E.P.Popov, Yu.V.Aleksiayenak, [a.o.] // Nanomaterials [Electronic resource]. – 2022. – Vol.12, No.11. – P.1783.
https://doi.org/10.3390/nano12111783

259. Doroshkevich, A.S. The Rectifying Contact of Hydrated Different Size YSZ Nanoparticles for Advanced Electronics / A.S.Doroshkevich, A.S.Zakharova, A.A.Tatarinova, A.K.Kirillov, V.I.Bodnarchuk, M.Balasoiu, M.N.Mirzayev, A.A.Nabiyev, E.P.Popov, A.A.Donkov, [a.o.] // Nanomaterials [Electronic resource]. – 2022. – Vol.12, No.24. – P.4493. – Bibliogr.:43.
https://doi.org/10.3390/nano12244493

260. Gumirova, V. The Influence of Mechanical Stress Micro Fields Around Pores on the Strength of Elongated Etched Membrane / V.Gumirova, P.Apel, [a.o.] // Membranes [Electronic resource]. – 2022. – Vol.12, No.11. – P.1168. – Bibliogr.:35.
https://doi.org/10.3390/membranes12111168

261. Ivlieva, A. Does Nanosilver Have a Pronounced Toxic Effect on Humans? / A.Ivlieva, N.Yushin, D.Grozdov, K.Vergel, I.Zinicovscaia, [a.o.] // Applied Sciences [Electronic resource]. – 2022. – Vol.12, No.7. – P.3476. – Bibliogr.:68.
https://doi.org/10.3390/app12073476

262. Karpets, M. Electric Field-Induced Assembly of Magnetic Nanoparticles from Dielectric Ferrofluids on Planar Interface / M.Karpets, I.Gapon, M.Avdeev [et al.] // Journal of Molecular Liquids [Electronic resource]. – 2022. – Vol.362. – P.119773. – Bibliogr.:47.
https://doi.org/10.1016/j.molliq.2022.119773

263. Kukushkin, V. Aptamer-Coated Track-Etched Membranes with a Nanostructured Silver Layer for Single Virus Detection in Biological Fluids / V.Kukushkin, O.Kristavchuk, E.Andreev, A.Nechaev, [a.o.] // Frontiers in Bioengineering and Biotechnology [Electronic resource]. – 2022. – Vol.10. – P.1-11. – Bibliogr.:P.10-11.
https://doi.org/10.3389/fbioe.2022.1076749

264. Lombardo, D. Methods of Liposomes Preparation: Formation and Control Factors of Versatile Nanocarriers for Biomedical and Nanomedicine Application / D.Lombardo, M.A.Kiselev // Pharmaceutics [Electronic resource]. – 2022. – Vol.14, No.3. – P.543. – Bibliogr.:206.
https://doi.org/10.3390/pharmaceutics14030543

265. Makarova, A.L. Viscoelastic Properties and Structure of Dual Networks of Polymer and Micellar Chains / A.L.Makarova, A.V.Shibaev, A.I.Kuklin, O.E.Philippova // Condensed Matter Research at the IBR-2. International Conference, Dubna, April 25-29, 2022 : Programme and Abstracts / Ed.: V.S.Smirnova. – Dubna : JINR, 2022. – P.172. – Bibliogr.:1. – (JINR ; E3-2022-17).
http://inis.jinr.ru/sl/ntblib/cmr_2022-172.pdf

266. Melenev, P.V. Simulation of Magneto-Mechanical Response of Ferrogel Samples with Various Polymer Structure / P.V.Melenev, A.V.Ryzhkov, M.Balasoiu // Soft Materials [Electronic resource]. – 2022. – Vol.20, Supp.1. – P.S50-558. – Bibliogr.:35.
https://doi.org/10.1080/1539445x.2021.1998119

267. Nichka, V.S. Modeling the Conductivity and Diffusion Permeability of a Track-Etched Membrane Taking into Account a Loose Layer / V.S.Nichka, P.Yu.Apel, [a.o.] // Membranes [Electronic resource]. – 2022. – Vol.12, No.12. – P.1283. – Bibliogr.:61.
https://doi.org/10.3390/membranes12121283

268. Popescu-Lipan, L. Antioxidant Molecule Useful in the Stabilization of Nanoparticles in Water Suspension / L.Popescu-Lipan, M.Balasoiu, [a.o.] // Soft Materials [Electronic resource]. – 2022. – Vol.20, Supp.1. – P.S76-S90. – Bibliogr.:44.
https://doi.org/10.1080/1539445x.2022.2028832

269. Rakotoarisoa, M. Liquid Crystalline Lipid Nanoparticles for Combined Delivery of Curcumin, Fish Oil and BDNF: In Vitro Neuroprotective Potential in a Cellular Model of Tunicamycin-Induced Endoplasmic Reticulum Stress / M.Rakotoarisoa, Yu.E.Gorshkova [et al.] // Smart Materials in Medicine [Electronic resource]. – 2022. – Vol.3. – P.274-288. – Bibliogr.:113.
https://doi.org/10.1016/j.smaim.2022.03.001

270. Shilova, O. Nanodiamond Batch Enriched with Boron: Properties and Prospects for Use in Agriculture / O.Shilova, Yu.Gorshkova, [a.o.] // Biointerface Research in Applied Chemistry [Electronic resource]. – 2022. – Vol.12, No.5. – P.6134-6147. – Bibliogr.:46.
https://doi.org/10.33263/briac125.61346147

271. Shylo, A. Hydrated Zirconia Nanoparticles as Media for Electrical Charge Accumulation / A.Shylo, O.Doroshkevich, [a.o.] // Journal of Nanoparticle Research [Electronic resource]. – 2022. – Vol.24, No.1. – P.18. – Bibliogr.: 26.
https://doi.org/10.1007/s11051-022-05407-5

272. Socoliuc, V. Ferrofluids and Bio-Ferrofluids: Looking Back and Stepping Forward / V.Socoliuc, M.V.Avdeev, [a.o.] // Nanoscale [Electronic resource]. – 2022. – Vol.14, No.13. – P.4786-4886. – Bibliogr.:826.
https://doi.org/10.1039/d1nr05841j

273. Stolyar, S.V. Ferrihydrite Nanoparticles Produced by Klebsiella Oxytoca: Structure and Properties Dependence on the Cultivation Time / S.V.Stolyar, M.Balasoiu [et al.] // Advanced Powder Technology [Electronic resource]. – 2022. – Vol.33, No.8. – P.103692. – Bibliogr.:59.
https://doi.org/10.1016/j.apt.2022.103692

274. Tishkevich, D.I. Isostatic Hot Pressed W-Cu Composites with Nanosized Grain Boundaries: Microstructure, Structure and Radiation Shielding Efficiency Against Gamma Rays / D.I.Tishkevich, T.N.Vershinina, [a.o.] // Nanomaterials [Electronic resource]. – 2022. – Vol.12, No.10. – P.1642. – Bibliogr.:54.
https://doi.org/10.3390/nano12101642

275. Tomchuk, O.V. Structural Organization of Nanodispersed Aluminic Materials Synthesized in a Plasma Reactor / O.V.Tomchuk, A.A.Nabiev, O.Yu.Ivanshina, T.N.Vershinina, [a.o.] // Condensed Matter Research at the IBR-2. International Conference, Dubna, April 25-29, 2022 : Programme and Abstracts / Ed.: V.S.Smirnova. – Dubna : JINR, 2022. – P.126. – Bibliogr.:3. – (JINR ; E3-2022-17).
http://inis.jinr.ru/sl/ntblib/cmr_2022-126.pdf

276. Turchenko, V. Temperature Dependence of Spontaneous Polarization in Barium Hexaferrite / V.Turchenko, A.V.Rutkauskas, [a.o.] // Condensed Matter Research at the IBR-2. International Conference, Dubna, April 25-29, 2022 : Programme and Abstracts / Ed.: V.S.Smirnova. – Dubna : JINR, 2022. – P.29. – Bibliogr.:2. – (JINR ; E3-2022-17).
http://inis.jinr.ru/sl/ntblib/cmr_2022-p29.pdf

277. Yukalov, V.I. Triggering Spin Reversal in Nanomolecules and Nanoclusters on Demand / V.I.Yukalov, E.P.Yukalova // Laser Physics Letters [Electronic resource]. – 2022. – Vol.19, No.4. – P.046001.
https://doi.org/10.1088/1612-202x/ac59be

278. Zakharova, A.S. Electrical Properties of a Hydrated Contact of Different-Sized YSZ-Particles / A.S.Zakharova, A.S.Doroshkevich, E.A.Gridina, [a.o.] // Condensed Matter Research at the IBR-2. International Conference, Dubna, April 25-29, 2022 : Programme and Abstracts / Ed.: V.S.Smirnova. – Dubna : JINR, 2022. – P.128-129. – Bibliogr.:3. – (JINR ; E3-2022-17).
http://inis.jinr.ru/sl/ntblib/cmr_2022-128.pdf

279. Zelenakova, A. Gadolinium-Oxide Nanoparticles for Cryogenic Magnetocaloric Applications / A.Zelenakova, P.Hrubovcak, N.Kucerka, O.Ivankov, A.Kuklin, [a.o.] // Scientific Reports [Electronic resource]. – 2022. – Vol.12. – P.2282. – Bibliogr.:39.
https://doi.org/10.1038/s41598-022-06132-8

280. Zhdanov, G. A Combination of Membrane Filtration and Raman-Active DNA Ligand Greatly Enhances Sensitivity of SERS-Based Aptasensors for Influenza A Virus / G.Zhdanov, O.Kristavchuk, E.Andreev, [a.o.] // Frontiers in Chemistry [Electronic resource]. – 2022. – Vol.10. – P.937180. – Bibliogr.:37.
https://doi.org/10.3389/fchem.2022.937180

281. Горшкова, Ю.Е. Биогибридные нанокомплексы на основе фитогенерированных наночастиц Ag/AgCl, биоподобных мембран и хитозана и их потенциальное применение в биомедицине / Ю.Е.Горшкова, Г.Д.Бокучава, В.А.Турченко // Новости ОИЯИ = JINR News. – 2022. – №1. – С.20-22. - Библиогр.:2.
http://inis.jinr.ru/sl/ntblib/news_1-2022_p20.pdf