Zobrazeno 1 - 10
of 32
pro vyhledávání: '"Tuan-Hoang Tran"'
Autor:
Arsalan D. Badaraev, Dmitrii V. Sidelev, Anna I. Kozelskaya, Evgeny N. Bolbasov, Tuan-Hoang Tran, Alexey V. Nashchekin, Aleksandra S. Kostina, Anna B. Malashicheva, Sven Rutkowski, Sergei I. Tverdokhlebov
Publikováno v:
Polymers, Vol 16, Iss 16, p 2372 (2024)
Aleksandra S [...]
Externí odkaz:
https://doaj.org/article/d9a90cf9a4184a5d88bcf5911f3b94d2
Autor:
Gennadiy Murastov, Muhammad Awais Aslam, Tuan-Hoang Tran, Alice Lassnig, Kenji Watanabe, Takashi Taniguchi, Stefan Wurster, Manfred Nachtnebel, Christian Teichert, Evgeniya Sheremet, Raul D. Rodriguez, Aleksandar Matkovic
Publikováno v:
Communications Chemistry, Vol 6, Iss 1, Pp 1-9 (2023)
Abstract Metallic nanoparticles are widely explored for boosting light-matter coupling, optoelectronic response, and improving photocatalytic performance of two-dimensional (2D) materials. However, the target area is restricted to either top or botto
Externí odkaz:
https://doaj.org/article/6c608ab8cfd74776a646fc7e0b411e88
Autor:
Arsalan D. Badaraev, Tuan-Hoang Tran, Anastasia G. Drozd, Evgenii V. Plotnikov, Gleb E. Dubinenko, Anna I. Kozelskaya, Sven Rutkowski, Sergei I. Tverdokhlebov
Publikováno v:
Technologies, Vol 11, Iss 5, p 137 (2023)
In this work, the effects of weight concentration on the properties of poly(lactide-co-glycolide) polymeric scaffolds prepared by electrospinning are investigated, using four different weight concentrations of poly(lactide-co-glycolide) for the elect
Externí odkaz:
https://doaj.org/article/4bfd8acb5b3448f497b0da5ea1b5460c
Autor:
Pavel V. Maryin, Tuan-Hoang Tran, Anastasia A. Frolova, Mikhail A. Buldakov, Evgeny L. Choinzonov, Anna I. Kozelskaya, Sven Rutkowski, Sergei I. Tverdokhlebov
Publikováno v:
Polymers, Vol 15, Iss 13, p 2969 (2023)
Controlled regeneration processes involving tissue growth using the surface and structure of scaffolds, are actively used in tissue engineering. Reactive magnetron sputtering is a versatile surface modification method of both metal and polymer substr
Externí odkaz:
https://doaj.org/article/2c1d9827f16d4d5a9f5f8cb076909eb3
Autor:
Alexander Y. Fedotkin, Igor O. Akimchenko, Tuan-Hoang Tran, Artur R. Shugurov, Evgeniy V. Shesterikov, Anna I. Kozelskaya, Sven Rutkowski, Sergei I. Tverdokhlebov
Publikováno v:
Materials, Vol 16, Iss 8, p 2990 (2023)
Polyether ether ketone is a bioinert polymer, that is of high interest in research and medicine as an alternative material for the replacement of bone implants made of metal. The biggest deficit of this polymer is its hydrophobic surface, which is ra
Externí odkaz:
https://doaj.org/article/8398b06e387749d9a2964be2479996ab
Autor:
Arsalan D. Badaraev, Marat I. Lerner, Olga V. Bakina, Dmitrii V. Sidelev, Tuan-Hoang Tran, Maksim G. Krinitcyn, Anna B. Malashicheva, Elena G. Cherempey, Galina B. Slepchenko, Anna I. Kozelskaya, Sven Rutkowski, Sergei I. Tverdokhlebov
Publikováno v:
Pharmaceutics, Vol 15, Iss 3, p 939 (2023)
Biocompatible poly(lactide-co-glycolide) scaffolds fabricated via electrospinning are having promising properties as implants for the regeneration of fast-growing tissues, which are able to degrade in the body. The hereby-presented research work inve
Externí odkaz:
https://doaj.org/article/371fd65e4bee4fdea7473d92085b2e2d
Autor:
Igor O. Akimchenko, Sven Rutkowski, Tuan-Hoang Tran, Gleb E. Dubinenko, Vsevolod I. Petrov, Anna I. Kozelskaya, Sergei I. Tverdokhlebov
Publikováno v:
Materials, Vol 15, Iss 22, p 8029 (2022)
Recently, polyether ether ketone has raised increasing interest in research and industry as an alternative material for bone implants. This polymer also has some shortcomings, as it is bioinert and its surface is relatively hydrophobic, causing poor
Externí odkaz:
https://doaj.org/article/f62cd64538ad4396bba1d6f368426dda
Autor:
Arsalan D. Badaraev, Dmitrii V. Sidelev, Anna I. Kozelskaya, Evgeny N. Bolbasov, Tuan-Hoang Tran, Alexey V. Nashchekin, Anna B. Malashicheva, Sven Rutkowski, Sergei I. Tverdokhlebov
Publikováno v:
Polymers, Vol 14, Iss 22, p 4922 (2022)
In this study, polymer scaffolds were fabricated from biodegradable poly(lactide-co-glycolide) (PLGA) and from non-biodegradable vinylidene fluoride-tetrafluoroethylene (VDF-TeFE) by electrospinning. These polymer scaffolds were subsequently surface-
Externí odkaz:
https://doaj.org/article/14eceee9674843ceb8e613b023010042
Publikováno v:
SAGE Open; Apr-Jun2024, Vol. 14 Issue 2, p1-18, 18p
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