Dmitry I Yakubovsky
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Explore the profile of Dmitry I Yakubovsky including associated specialties, affiliations and a list of published articles.
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28
Citations
155
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Recent Articles
1.
Mironov M, Yakubovsky D, Ermolaev G, Khramtsov I, Kirtaev R, Slavich A, et al.
Nano Lett
. 2024 Dec;
24(51):16270-16275.
PMID: 39667738
As the trajectory toward the graphene era continues, there is a compelling need to harness 2D technology further for the transformation of three-dimensional (3D) materials production and applications. Here, we...
2.
Voronin K, Ermolaev G, Burdanova M, Slavich A, Toksumakov A, Yakubovsky D, et al.
Adv Sci (Weinh)
. 2024 Jul;
11(36):e2404694.
PMID: 39082235
The lattice geometry of natural materials and the structural geometry of artificial materials are crucial factors determining their physical properties. Most materials have predetermined geometries that lead to fixed physical...
3.
Doroshina N, Streletskiy O, Zavidovskiy I, Tatmyshevskiy M, Tselikov G, Kapitanova O, et al.
Heliyon
. 2024 Mar;
10(6):e27538.
PMID: 38509939
The plasmonic sensors based on silver nanoparticles are limited in application due to their relatively fast degradation in the ambient atmosphere. The technology of ion-beam modification for the creation of...
4.
Ermolaev G, Voronin K, Toksumakov A, Grudinin D, Fradkin I, Mazitov A, et al.
Nat Commun
. 2024 Mar;
15(1):1552.
PMID: 38448442
Nature is abundant in material platforms with anisotropic permittivities arising from symmetry reduction that feature a variety of extraordinary optical effects. Principal optical axes are essential characteristics for these effects...
5.
Panova D, Tselikov G, Ermolaev G, Syuy A, Zimbovskii D, Kapitanova O, et al.
Opt Lett
. 2023 Dec;
49(1):25-28.
PMID: 38134143
The exceptional optical, electrical, and mechanical capabilities of layered transition metal carbides, nitrides, and carbonitrides, called MXenes, revolutionized materials science. Among them, TiC received the most attention owing to the...
6.
Romanov R, Zabrosaev I, Chouprik A, Yakubovsky D, Tatmyshevskiy M, Volkov V, et al.
Nanomaterials (Basel)
. 2023 Oct;
13(19).
PMID: 37836353
Metal-Organic CVD method (MOCVD) allows for deposition of ultrathin 2D transition metal dichalcogenides (TMD) films of electronic quality onto wafer-scale substrates. In this work, the effect of temperature on structure,...
7.
Yakubovsky D, Grudinin D, Ermolaev G, Voronin K, Svintsov D, Vyshnevyy A, et al.
Nano Lett
. 2023 Oct;
23(20):9461-9467.
PMID: 37811878
The physics of electrons, photons, and their plasmonic interactions change dramatically when one or more dimensions are reduced to atomic-level thicknesses. For example, graphene exhibits unique electrical, plasmonic, and optical...
8.
Vyshnevyy A, Ermolaev G, Grudinin D, Voronin K, Kharichkin I, Mazitov A, et al.
Nano Lett
. 2023 Aug;
23(17):8057-8064.
PMID: 37615652
With the advance of on-chip nanophotonics, there is a high demand for high-refractive-index and low-loss materials. Currently, this technology is dominated by silicon, but van der Waals (vdW) materials with...
9.
Romanov R, Zabrosaev I, Kozodaev M, Yakubovsky D, Tatmyshevskiy M, Timofeev A, et al.
ACS Omega
. 2023 May;
8(19):16579-16586.
PMID: 37214699
Heterogeneous nanostructures composed of metastable tetragonal 1T-MoS and stable hexagonal 2H-MoS phases are highly promising for a wide range of applications, including catalysis and ion batteries, due to the high...
10.
Ermolaev G, Vyslanko I, Tselin A, El-Sayed M, Tatmyshevskiy M, Slavich A, et al.
Nanomaterials (Basel)
. 2023 May;
13(9).
PMID: 37177004
Materials with high optical constants are of paramount importance for efficient light manipulation in nanophotonics applications. Recent advances in materials science have revealed that van der Waals (vdW) materials have...