Быченок Дмитрий Сергеевич

Публикации

Общее число записей - 16
1 Kuzhir P.P., Paddubskaya A., Bychanok D.S., Liubimau A., Ortona A., Fierro V., Celzard A. 3D-printed, carbon-based, lossy photonic crystals: Is high electrical conductivity the must? //Carbon. 2021. Vol. 171. P. 484-492.
2 Lambin P., Liubimau A., Bychanok D., Vitale L., Kuzhir P. Thermal and Electromagnetic Properties of Polymer Holey Structures Produced by Additive Manufacturing //Polymers. 2020. Vol. 12, № 12. P. 2892-1-2892-19.
3 Rollo G., Bychanok D.S., Kuzhir P.P., Lavorgna M., Ambrosio L. On the synergistic effect of multi-walled carbon nanotubes and graphene nanoplatelets to enhance the functional properties of SLS 3D-printed elastomeric structures //Polymers. 2020. Vol. 12, № 8. P. 1841-1-1841-18.
4 Terahertz Optics of Materials with Spatially Harmonically Distributed Refractive Index / Bychanok D.S., Gorokhov G., Plyushch A., Ronca A. [et al] // Materials. 2020. Vol. 13, № 22. P. 5208-1‒5208-11. DOI: 10.3390/ma13225208
5 Gorokhov G., Bychanok D.S., Kuzhir P.P., Gorodetskiy D.V., Bulusheva L.G., Sedelnikova O. V., Okotrub A.V. Creation of metasurface from vertically aligned carbon nanotubes as versatile platform for ultra-light THz components //Nanotechnology. 2020. Vol. 31, № 25. P. 1-7.
6 Kotsilkova R., Ivanov E., Bychanok D.S., Kuzhir P.P., Di Maio R., Silvestre C., Cimmino S., and 7 more. Essential Nanostructure Parameters to Govern Reinforcement and Functionality of Poly(lactic) Acid Nanocomposites with Graphene and Carbon //Polymers. 2020. Vol. 12, № 6. P. 1208-1-1208-21.
7 Robust design of compact microwave absorbers and waveguide matched loads based on DC-conductive 3D-printable filament / Bychanok D.S., Meisak D., Plyushch A., Gurnevich E. [et al] // Journal of Physics D: Applied Physics. 2020. Vol. 53, № 30. P. 305301-1‒305301-7. DOI: 10.1088/1361-6463/ab86e6
8 Shuba M.V., Yuko D.I., Gorokhov G., Meisak D., Bychanok D.S., Kuzhir P.P., Maksimenko S.A., Angelova P., Ivanov E., Kotsilkova R. Frequency and density dependencies of the electromagnetic parameters of carbon nanotube and graphene nanoplatelet based composites in the microwave and terahertz ranges //Materials Research Express. 2019. Vol. 6, № 9. P. 1-11.
9 Nanocarbon/Poly(Lactic) Acid for 3D Printing: Effect of Fillers Content on Electromagnetic and Thermal Properties / Bychanok D.S., Kuzhir P.P., Spinelli G., Lamberti P. [et al] // Materials. 2019. Vol. 12, № 15. P. 2369-1‒2369-10. DOI: 10.3390/ma12152369
10 Carbon nanotubes vs graphene nanoplatelets for 3D-printable composites / Bychanok D.S., Kuzhir P.P., Gorokhov G., Meisak D. [et al] // IOP Conference Series: Materials Science and Engineering. 2019. Vol. 503. P. 012010-1‒012010-7. DOI: 10.1088/1757-899X/503/1/012010
11 Meisak D., Macutkevic J., Bychanok D.S., Selskis A., Banys J., Kuzhir P.P. Broadband Dielectric Properties of Fe2O3H2O Nanorods/Epoxy Resin Composites //Journal of Nanomaterials. 2019. P. 1-8.
12 Plyushch A., Macutkevic J., Samulionis V., Banys J., Bychanok D.S., Kuzhir P.P., Mathieu S., Fierro V., Celzard A. Synergetic Effect of Triglycine Sulfate and Graphite Nanoplatelets on Dielectric and Piezoelectric Properties of Epoxy Resin Composites //Polymer Composites. 2019. Vol. 40, № S2. P. E1181-E1188.
13 Sela R., Bychanok D.S., Padrez Y., Adamchuk D., Ksenevich V., Naveh N., Kuzhir P.P. Electromagnetic properties of chloroprene rubber after long-term ultraviolet ageing, oil immersion and thermal degradation //Materials Research Express. 2019. Vol. 6, № 7. P. 075327-1-075327-9.
14 Plyushch A., Macutkevic J., Svirskas S., Banys J., Plausinaitiene V., Bychanok D.S., Maksimenko S.A., Selskis A., Sokal A., Lapko K., Kuzhir P.P. Silicon carbide/phosphate ceramics composite for electromagnetic shielding applications: Whiskers vs particles //Applied Physics Letters. 2019. Vol. 114, № 18. P. 183105-1-183105-5.
15 Electrical properties of carbon foam in the microwave range / Suslyaev V.I., Korovin E.Y., Kuzhir P.P., Letellier M [et al] // Russian Physics Journal. 2017. Vol. 59, № 10. P. 1703‒1709. DOI: 10.1007/s11182-017-0964-3
16 Кужир П.П., Летельер М., Быченок Д.С., Поддубская О.Г., Сусляев В.И., Коровин Е.Ю., Батуркин С.В., Ферро В., Целзард А. Электрофизические характеристики углеродного пеноматериала в СВЧ диапазоне //Известия вузов. Физика. 2016. Т. 59, № 10. С. 160-166.