Zobrazeno 1 - 10
of 82
pro vyhledávání: '"A. V. Zhizhin"'
Autor:
Ananya Das, Evgeny V. Kundelev, Anna A. Vedernikova, Sergei A. Cherevkov, Denis V. Danilov, Aleksandra V. Koroleva, Evgeniy V. Zhizhin, Anton N. Tsypkin, Aleksandr P. Litvin, Alexander V. Baranov, Anatoly V. Fedorov, Elena V. Ushakova, Andrey L. Rogach
Publikováno v:
Light: Science & Applications, Vol 11, Iss 1, Pp 1-13 (2022)
Using different chiral precursor molecules, we produced chiral CDs with superior optical properties, such as two-photon absorption, high photoluminescence quantum yield reaching 57%, and chiral signals in the UV-Vis spectral region.
Externí odkaz:
https://doaj.org/article/1ded9a85b771413b843de0247ea56691
Autor:
Anastasiia V. Sokolova, Ivan D. Skurlov, Anton A. Babaev, Peter S. Perfenov, Maksim A. Miropoltsev, Denis V. Danilov, Mikhail A. Baranov, Ilya E. Kolesnikov, Aleksandra V. Koroleva, Evgeniy V. Zhizhin, Aleksandr P. Litvin, Anatoly V. Fedorov, Sergei A. Cherevkov
Publikováno v:
Nanomaterials, Vol 12, Iss 23, p 4198 (2022)
Doping the semiconductor nanocrystals is one of the most effective ways to obtain unique materials suitable for high-performance next-generation optoelectronic devices. In this study, we demonstrate a novel nanomaterial for the near-infrared spectral
Externí odkaz:
https://doaj.org/article/d848fb575e274fb78cb2f747d523aa0b
Autor:
Anna A. Vedernikova, Mikhail D. Miruschenko, Irina A. Arefina, Anton A. Babaev, Evgeniia A. Stepanidenko, Sergei A. Cherevkov, Igor G. Spiridonov, Denis V. Danilov, Aleksandra V. Koroleva, Evgeniy V. Zhizhin, Elena V. Ushakova
Publikováno v:
Nanomaterials, Vol 12, Iss 19, p 3314 (2022)
Today, the development of nanomaterials with sensing properties attracts much scientific interest because of the demand for low-cost nontoxic colloidal nanoprobes with high sensitivity and selectivity for various biomedical and environment-related ap
Externí odkaz:
https://doaj.org/article/882bf13c28f2467ab3fcea93abb0e866
Autor:
Danila A. Tatarinov, Anastasiia V. Sokolova, Ivan D. Skurlov, Denis V. Danilov, Aleksandra V. Koroleva, Natalya K. Kuzmenko, Yuliya A. Timkina, Mikhail A. Baranov, Evgeniy V. Zhizhin, Anton N. Tcypkin, Aleksandr P. Litvin
Publikováno v:
Journal of Materials Chemistry C. 11:5657-5666
Anion-assisted cation doping in a nonpolar solvent at room temperature has been proposed as a universal method to create multiple-band emitting lead halide perovskite nanostructures.
Autor:
Kseniia D. Kosolapova, Aleksandra V. Koroleva, Irina A. Arefina, Mikhail D. Miruschenko, Sergei A. Cherevkov, Igor G. Spiridonov, Evgeniy V. Zhizhin, Elena V. Ushakova, Andrey L. Rogach
Publikováno v:
Nanoscale. 15:8845-8853
Functionalization of CDs leads to energy structure change and a HOMO level shift of up to 0.9 eV.
Autor:
Evgeniia A. Stepanidenko, Ivan D. Skurlov, Pavel D. Khavlyuk, Dmitry A. Onishchuk, Aleksandra V. Koroleva, Evgeniy V. Zhizhin, Irina A. Arefina, Dmitry A. Kurdyukov, Daniil A. Eurov, Valery G. Golubev, Alexander V. Baranov, Anatoly V. Fedorov, Elena V. Ushakova, Andrey L. Rogach
Publikováno v:
Nanomaterials, Vol 12, Iss 3, p 543 (2022)
Carbon dots (CDs) with an emission in the near infrared spectral region are attractive due to their promising applications in bio-related areas, while their fabrication still remains a challenging task. Herein, we developed a template-assisted method
Externí odkaz:
https://doaj.org/article/eb94b7e4864f432d911c9fb47fbfc0c4
Autor:
Anastasiia V. Sokolova, Nikita V. Tepliakov, Azat O. Ismagilov, Danila A. Tatarinov, Alexey A. Kalinichev, Aleksandra V. Koroleva, Evgeniy V. Zhizhin, Mikhail A. Baranov, Elena V. Ushakova, Aleksandr P. Litvin
Publikováno v:
The Journal of Physical Chemistry C. 126:20550-20557
Publikováno v:
Atomic Energy. 132:232-237
Autor:
V. O. Chasova, D. G. Fukina, A. V. Boryakov, E. V. Zhizhin, A. V. Koroleva, L. L. Semenycheva, E. V. Suleimanov
Publikováno v:
Proceedings of Universities. Applied Chemistry and Biotechnology. 12:208-221
The features of the surface changes of the RbTe1.5W0.5O6 photocatalyst during polymerization processes involving methyl methacrylate (MMA) under irradiation with visible light λ= 400–700 nm at a temperature of 20–25 °C, as well as regeneration
Publikováno v:
Atomic Energy. 132:168-171