Zobrazeno 1 - 10
of 14
pro vyhledávání: '"Ivan Baginskiy"'
Autor:
Kateryna Diedkova, Alexander D. Pogrebnjak, Sergiy Kyrylenko, Kateryna Smyrnova, Vladimir V. Buranich, Pawel Horodek, Pawel Zukowski, Tomasz N. Koltunowicz, Piotr Galaszkiewicz, Kristina Makashina, Vitaly Bondariev, Martin Sahul, Maria Čaplovičová, Yevheniia Husak, Wojciech Simka, Viktoriia Korniienko, Agnieszka Stolarczyk, Agata Blacha-Grzechnik, Vitalii Balitskyi, Veronika Zahorodna, Ivan Baginskiy, Una Riekstina, Oleksiy Gogotsi, Yury Gogotsi, Maksym Pogorielov
Publikováno v:
ACS Applied Materials & Interfaces.
Autor:
Kateryna Diedkova, Anton Roshchupkin, Yulia Varava, Yevhen Samokhin, Veronika Zahorodna, Oleksiy Gogotsi, Ivan Baginskiy, Maksym Pogorielov, Viktoriia Kornienko, Sergiy Kyrylenko
Publikováno v:
2022 IEEE 12th International Conference Nanomaterials: Applications & Properties (NAP).
Autor:
Sergiy Kyrylenko, Oleksiy Gogotsi, Ivan Baginskiy, Vitalii Balitskyi, Veronika Zahorodna, Yevheniia Husak, Ilya Yanko, Mykolay Pernakov, Anton Roshchupkin, Mykola Lyndin, Bernhard B. Singer, Volodymyr Buranych, Alexander Pogrebnjak, Oksana Sulaieva, Oleksandr Solodovnyk, Yury Gogotsi, Maksym Pogorielov
Innovative therapies are urgently needed to combat cancer. Thermal ablation of tumor cells is a promising minimally invasive treatment option. Infrared light can penetrate human tissues and reach superficial malignancies. MXenes are a class of 2D mat
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::3851a30541d2a6d4e2337674e06fbbfa
https://www.ncbi.nlm.nih.gov/pubmed/35704779
https://www.ncbi.nlm.nih.gov/pubmed/35704779
Autor:
Valerii Myndrul, Emerson Coy, Nataliya Babayevska, Veronika Zahorodna, Vitalii Balitskyi, Ivan Baginskiy, Oleksiy Gogotsi, Mikhael Bechelany, Maria Teresa Giardi, Igor Iatsunskyi
Publikováno v:
Biosensors and Bioelectronics
Continuous painless glucose monitoring is the greatest desire of more than 422 million diabetics worldwide. Therefore, new non-invasive and convenient approaches to glucose monitoring are more in demand than other tests for microanalytical diagnostic
Autor:
Michael Hsiao, Ivan Baginskiy, Din Ping Tsai, Yung Chieh Chan, Ru-Shi Liu, Cheng Liang Chien, Her Li Jane, Chung-Hsuan Chen, Tsung Ching Lai, Shu Fen Hu, Kuang-Yu Yang
Publikováno v:
The Journal of Physical Chemistry C. 117:2396-2410
The preparation and properties of plasmonic gold nanostars (Au NSs) modified with a biopolymer chitosan are reported. The colloidal stability of Au NSs at the physiological pH of 7.5 and their performance in the photothermolysis of cancer cells in vi
Publikováno v:
Journal of The Electrochemical Society. 158:P118-P121
Samples of (Sr1.9−xBax)SiO4:Eu0.1 were synthesized by a solid-state reaction. The maximum emission intensity under 460 nm excitation was obtained at a Ba content, x, of 1.6. All Sr1.9−xBaxSiO4:Eu0.1 samples except for Ba1.9SiO4:Eu0.1 exhibited a
Autor:
R Wierzbicki, Y.Y. Chen, H. T. Kuo, Ru-Shi Liu, C.B. Tsai, Ramazan Asmatulu, Ivan Baginskiy, C.C. Yang, L.N. Fomicheva, H.H. Wu, J.C. Ho, A.V. Tsvyashchenko, Stanislaw M. Filipek, R. Sato
Publikováno v:
International Journal of Hydrogen Energy. 36:2285-2290
The capacity of YMn 2 to undergo reversible hydrogenization makes this compound a potential candidate for hydrogen storage. This report describes the successful synthesis of YMn 2 H 6 from hexagonal C14 YMn 2 as well as calorimetric studies of hexago
Publikováno v:
Chemistry of Materials. 20:1215-1217
A novel green-yellow emitting Mn2+-doped LiZnPO4 phosphor can be excited under ultraviolet and blue light. The phosphor will be an attractive candidate as an ascendant phosphor for potential applications in light emitting diodes.
Publikováno v:
ChemInform. 39
A novel green-yellow emitting Mn2+-doped LiZnPO4 phosphor can be excited under ultraviolet and blue light. The phosphor will be an attractive candidate as an ascendant phosphor for potential applications in light emitting diodes.
Autor:
Ru-Shi Liu, Ivan Baginskiy
Publikováno v:
Journal of The Electrochemical Society. 156:G29
A two-stage method for the preparation of Eu 2+ -doped Ca 3 SiO 4 Cl 2 is reported. It was observed that the emission intensity is significantly enhanced up to 30% by the two-stage method. The critical concentration of Eu 2+ was found to be 0.01 mol