Modes development of PLGA scaffolds modification by magnetron co-sputtering of Cu and Ti targets; Journal of Physics: Conference Series; Vol. 1799 : Vacuum Technique and Technology
| Parent link: | Journal of Physics: Conference Series Vol. 1799 : Vacuum Technique and Technology.— 2021.— [012001, 6 р.] |
|---|---|
| Ente Autore: | Национальный исследовательский Томский политехнический университет Инженерная школа ядерных технологий Научно-образовательный центр Б. П. Вейнберга |
| Altri autori: | Badaraev A. D. Arsalan Dorzhievich, Sidelev D. V. Dmitry Vladimirovich, Yuriev Yu. N. Yuri Nikolaevich, Bukal V. R. Vladislav Romanovich, Tverdokhlebov S. I. Sergei Ivanovich |
| Riassunto: | Title screen Bioresorbable scaffolds from poly(lactide-co-glycolide) (PLGA) were formed by electrospinning. Then, plasma modification of PLGA scaffolds was carried out by magnetron co-sputtering of copper and titanium targets in Ar. The surface morphology, elemental composition and mechanical properties of the obtained samples were investigated. The modes of plasma modification were selected that could preserve the macrostructure, morphology and mechanical properties of PLGA scaffolds. |
| Lingua: | inglese |
| Pubblicazione: |
2021
|
| Soggetti: | |
| Accesso online: | http://earchive.tpu.ru/handle/11683/81006 https://doi.org/10.1088/1742-6596/1799/1/012001 |
| Natura: | Elettronico Capitolo di libro |
| KOHA link: | https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=664526 |
Documenti analoghi
The role of thermal processes and target evaporation in formation of self-sputtering mode for copper magnetron sputtering; Vacuum; Vol. 152
Pubblicazione: (2018)
Pubblicazione: (2018)
Antibacterial Activity and Cytocompatibility of Electrospun PLGA Scaffolds Surface-Modified by Pulsed DC Magnetron Co-Sputtering of Copper and Titanium; Pharmaceutics; Vol. 15, iss. 3
Pubblicazione: (2023)
Pubblicazione: (2023)
The properties of Cu films deposited by high rate magnetron sputtering from a liquid target; Vacuum; Vol. 169
Pubblicazione: (2019)
Pubblicazione: (2019)
Angular thickness distribution and target utilization for hot Ni target magnetron sputtering; Vacuum; Vol. 160
di: Sidelev D. V. Dmitry Vladimirovich
Pubblicazione: (2018)
di: Sidelev D. V. Dmitry Vladimirovich
Pubblicazione: (2018)
PLLA scaffold modification using magnetron sputtering of the copper target to provide antibacterial properties; Resource-Efficient Technologies; Vol. 3, iss. 2
Pubblicazione: (2017)
Pubblicazione: (2017)
Energy and substance transfer in magnetron sputtering systems with liquid-phase target; Vacuum; Vol. 124
Pubblicazione: (2016)
Pubblicazione: (2016)
Evaporation factor in productivity increase of hot target magnetron sputtering systems; Vacuum; Vol. 132
Pubblicazione: (2016)
Pubblicazione: (2016)
Effect of material of the crucible on operation of magnetron sputtering system with liquid-phase target; Vacuum; Vol. 141
Pubblicazione: (2017)
Pubblicazione: (2017)
Nickel and Chromium Deposition by Hot Target Magnetron Sputtering; Surface Modification of Materials by Ion Beams (SMMIB-2019)
Pubblicazione: (2019)
Pubblicazione: (2019)
A comparative study on the properties of chromium coatings deposited by magnetron sputtering with hot and cooled target; Vacuum; Vol. 143
Pubblicazione: (2017)
Pubblicazione: (2017)
Hot target magnetron sputtering enhanced by RF-ICP source for CrNx coatings deposition; Vacuum; Vol. 191
Pubblicazione: (2021)
Pubblicazione: (2021)
Surface modification of electrospun poly-(l-lactic) acid scaffolds by reactive magnetron sputtering; Colloids and Surfaces B: Biointerfaces; Vol. 162
Pubblicazione: (2018)
Pubblicazione: (2018)
Biological Effect of the Surface Modification of the Fibrous Poly(L-lactic acid) Scaffolds by Radio Frequency Magnetron Sputtering of Different Calcium-Phosphate Targets; BioNanoScience; Vol. 7, iss. 1
Pubblicazione: (2017)
Pubblicazione: (2017)
Influence of magnesium and strontium substitutions in the structure of hydroxyapatite lattice on the deposition rate and properties of the CaP coatings formed via RF-sputtering of the powder targets; Journal of Physics: Conference Series; Vol. 1799 : Vacuum Technique and Technology
Pubblicazione: (2021)
Pubblicazione: (2021)
Antibacterial PLGA and PCL membranes, modified by magnetron sputtering method of copper target; IOP Conference Series: Materials Science and Engineering; Vol. 1093 : Advanced Materials for Engineering and Functional Purposes (AMEFP 2020)
di: Badaraev A. D. Arsalan Dorzhievich
Pubblicazione: (2021)
di: Badaraev A. D. Arsalan Dorzhievich
Pubblicazione: (2021)
Hot target magnetron sputtering enhanced by RF-ICP source: Microstructure and functional properties of CrNx coatings; Vacuum; Vol. 200
Pubblicazione: (2022)
Pubblicazione: (2022)
Modification of PCL Scaffolds by Reactive Magnetron Sputtering: A Possibility for Modulating Macrophage Responses; ACS Biomaterials Science & Engineering; Vol. 6, iss. 7
Pubblicazione: (2020)
Pubblicazione: (2020)
Surface Modification of Electrospun Bioresorbable and Biostable Scaffolds by Pulsed DC Magnetron Sputtering of Titanium for Gingival Tissue Regeneration; Polymers; Vol. 14, iss. 22
Pubblicazione: (2022)
Pubblicazione: (2022)
Controlling the Properties of Metal Films Deposited Using Magnetron Sputtering Systems with Evaporative Targets; Surface Modification of Materials by Ion Beams (SMMIB-2019)
Pubblicazione: (2019)
Pubblicazione: (2019)
Magnetron sputtering of hot silicon carbide target; Surface and Coatings Technology; Vol. 528
Pubblicazione: (2026)
Pubblicazione: (2026)
Surface modification of poly-E-caprolactone electrospun fibrous scaffolds using plasma discharge with sputter deposition of a titanium target; Materials Letters; Vol. 171
Pubblicazione: (2016)
Pubblicazione: (2016)
The oxygen-deficient TiO2 films deposited by a dual magnetron sputtering; Vacuum; Vol. 134
Pubblicazione: (2016)
Pubblicazione: (2016)
Magnetron sputtering in rigid optical solar reflectors production; Journal of Physics: Conference Series; Vol. 729 : Conference on Vacuum Technique and Technology
Pubblicazione: (2016)
Pubblicazione: (2016)
Hot target magnetron sputtering for ferromagnetic films deposition; Surface and Coatings Technology; Vol. 334
Pubblicazione: (2018)
Pubblicazione: (2018)
Modification of the Ceramic Implant Surfaces from Zirconia by the Magnetron Sputtering of Different Calcium Phosphate Targets: A Comparative Study; Materials; Vol. 10, iss. 10
Pubblicazione: (2018)
Pubblicazione: (2018)
High-rate magnetron deposition of CuOx films in the metallic mode enhanced by radiofrequency inductively coupled plasma source; Vacuum; Vol. 207
di: Sidelev D. V. Dmitry Vladimirovich
Pubblicazione: (2023)
di: Sidelev D. V. Dmitry Vladimirovich
Pubblicazione: (2023)
Sputtering of the magnetron diode target in the presence of an external ion beam; Technical Physics; Vol. 51, №4
di: Zhukov V. K.
Pubblicazione: (2006)
di: Zhukov V. K.
Pubblicazione: (2006)
Magnetron sputtering with hot solid target: thermal processes and erosion; Acta Polytechnica; Vol. 56, № 6
Pubblicazione: (2016)
Pubblicazione: (2016)
Surface modification of PLLA scaffolds via reactive magnetron sputtering in mixtures of nitrogen with noble gases for higher cell adhesion and proliferation; Colloids and Surfaces A: Physicochemical and Engineering Aspects; Vol. 649
Pubblicazione: (2022)
Pubblicazione: (2022)
Effect of Intermediate Ion Cleaning of the Titanium Target on the Structure of Bioresorbable PLLA Scaffolds under Coating Deposition by DC Reactive Magnetron Sputtering; Inorganic Materials: Applied Research; Vol. 11, iss. 3
Pubblicazione: (2020)
Pubblicazione: (2020)
Features of self-sustained magnetron sputtering of evaporating metal target; Gas Discharge Plasmas and Their Applications (GDP 2019)
Pubblicazione: (2019)
Pubblicazione: (2019)
Deposition of Cr films by hot target magnetron sputtering on biased substrates; Surface and Coatings Technology; Vol. 350
Pubblicazione: (2018)
Pubblicazione: (2018)
Effect of working gas on the deposition rate of CaP coatings formed by radio frequency magnetron sputtering of a hydroxyapatite target; Journal of Physics: Conference Series; Vol. 1313 : 26th International Conference on Vacuum Technique and Technology
di: Fedotkin A. Yu. Aleksandr Yurjevich
Pubblicazione: (2019)
di: Fedotkin A. Yu. Aleksandr Yurjevich
Pubblicazione: (2019)
Effect of PLGA Concentration in Electrospinning Solution on Biocompatibility, Morphology and Mechanical Properties of Nonwoven Scaffolds; Technologies; Vol. 11, iss. 5
Pubblicazione: (2023)
Pubblicazione: (2023)
Пророчество на 1799 год
di: Карамзин Н. М.
Pubblicazione: (Санкт-Петербург, Лань, 2013)
di: Карамзин Н. М.
Pubblicazione: (Санкт-Петербург, Лань, 2013)
Fabrication of PVA Coatings Applied to Electrospun PLGA Scaffolds to Prevent Postoperative Adhesions; Journal of Functional Biomaterials; Vol. 16, iss. 2
Pubblicazione: (2025)
Pubblicazione: (2025)
Metal Coatings Deposition Using Hot Target Magnetrons; Surface Modification of Materials by Ion Beams (SMMIB-2019)
Pubblicazione: (2019)
Pubblicazione: (2019)
Effect of energy on the formation of flexible hard Al-Si-N films prepared by magnetron sputtering; Vacuum; Vol. 133
Pubblicazione: (2016)
Pubblicazione: (2016)
Reactive magnetron sputtering of copper oxide coatings using the metallic mode assisted by RF-ICP source: Experiment and calculation; Journal of Vacuum Science and Technology A; Vol. 44, iss. 1
di: Sidelev D. V. Dmitry Vladimirovich
Pubblicazione: (2026)
di: Sidelev D. V. Dmitry Vladimirovich
Pubblicazione: (2026)
Bremsstrahlung converter system with target in vacuum; Vacuum; Vol. 187
Pubblicazione: (2021)
Pubblicazione: (2021)
Documenti analoghi
-
The role of thermal processes and target evaporation in formation of self-sputtering mode for copper magnetron sputtering; Vacuum; Vol. 152
Pubblicazione: (2018) -
Antibacterial Activity and Cytocompatibility of Electrospun PLGA Scaffolds Surface-Modified by Pulsed DC Magnetron Co-Sputtering of Copper and Titanium; Pharmaceutics; Vol. 15, iss. 3
Pubblicazione: (2023) -
The properties of Cu films deposited by high rate magnetron sputtering from a liquid target; Vacuum; Vol. 169
Pubblicazione: (2019) -
Angular thickness distribution and target utilization for hot Ni target magnetron sputtering; Vacuum; Vol. 160
di: Sidelev D. V. Dmitry Vladimirovich
Pubblicazione: (2018) -
PLLA scaffold modification using magnetron sputtering of the copper target to provide antibacterial properties; Resource-Efficient Technologies; Vol. 3, iss. 2
Pubblicazione: (2017)