Maksym Zhukovskyi
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Explore the profile of Maksym Zhukovskyi including associated specialties, affiliations and a list of published articles.
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9
Citations
13
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Recent Articles
1.
Bac S, le Mardele F, Wang J, Ozerov M, Yoshimura K, Mohelsky I, et al.
Phys Rev Lett
. 2025 Feb;
134(1):016601.
PMID: 39913693
Probing the quantum geometry and topology in condensed matter systems has relied heavily on static electronic transport experiments in magnetic fields. Yet, contact-free optical measurements have rarely been explored. Here,...
2.
Raufman B, Aligholizadeh D, Connolly C, Oliver A, Zhukovskyi M, Qureshi Z, et al.
Chem Asian J
. 2025 Jan;
e202401361.
PMID: 39805736
Au nanoclusters often demonstrate useful optical properties such as visible/near-infrared photoluminescence, in addition to remarkable thermodynamic stability owing to their superatomic behavior. The smallest of the 8e superatomic Au nanoclusters,...
3.
Pope A, Chen W, Chen H, Cao P, Yeghishyan A, Zhukovskyi M, et al.
Sci Rep
. 2024 Jul;
14(1):16472.
PMID: 39014091
We report on the high-resolution imaging and molecular dynamics simulations of a 3D-printed eutectic high-entropy alloy (EHEA) NiCoFeCrAlW consisting of nanolamellar BCC and FCC phases. The direct lattice imaging of...
4.
Sajini Devadas M, Smolyaninova V, Krushinski L, Aligholizadeh D, Langford K, Korzi W, et al.
Langmuir
. 2023 Jan;
39(5):1947-1956.
PMID: 36701794
The synthesis of FeCo alloys as highly magnetic nanoparticles has been valuable, as far as applications for magnetic nanoparticles are concerned. However, recently, a field of magnetoplasmonics in which magnetic...
5.
Shaffer C, Zhai C, Chasteen J, Orlova T, Zhukovskyi M, Smith B
Nanoscale
. 2022 Nov;
14(47):17514-17518.
PMID: 36408868
A binary mixture of mesoporous silica nanoparticles plus organic polyammonium additive (dye or drug) is cleanly converted upon mild heating into hollow nanoparticles. The remodeled nanoparticle shell is an organized...
6.
Neal R, Lawson Z, Tuff W, Xu K, Kumar V, Korsa M, et al.
Small
. 2022 Nov;
18(52):e2205780.
PMID: 36344422
The advancement of nanoenabled wafer-based devices requires the establishment of core competencies related to the deterministic positioning of nanometric building blocks over large areas. Within this realm, plasmonic single-crystal gold...
7.
Wang J, Powers W, Zhang Z, Smith M, McIntosh B, Bac S, et al.
Nano Lett
. 2022 Jan;
22(2):792-800.
PMID: 35007089
Topological superconductors have attracted tremendous excitement as they are predicted to host Majorana zero modes that can be utilized for topological quantum computing. Candidate topological superconductor SnInTe thin films (0...
8.
Brennan M, Forde A, Zhukovskyi M, Baublis A, Morozov Y, Zhang S, et al.
J Phys Chem Lett
. 2020 Jun;
11(13):4937-4944.
PMID: 32482071
Size-dependent photoluminescence Stokes shifts (Δ) universally exist in CsPbX (X = Cl, Br, or I) perovskite nanocrystals (NCs). Δ values, which range from ∼15 to 100 meV for NCs with...
9.
Zhukovskyi M, Plashnitsa V, Petchsang N, Ruth A, Bajpai A, Vietmeyer F, et al.
Nano Lett
. 2017 May;
17(6):3902-3906.
PMID: 28510441
We report for the first time the synthesis of large, free-standing, MoO(μ-S)(Etdtc) (MoDTC) nanosheets (NSs), which exhibit an electron-beam induced crystalline-to-amorphous phase transition. Both electron beam ionization and femtosecond (fs)...
10.
Wang Y, Zhukovskyi M, Tongying P, Tian Y, Kuno M
J Phys Chem Lett
. 2015 Aug;
5(21):3608-13.
PMID: 26278726
We demonstrate the use of cation exchange to synthesize ultrathin and thickness-controlled Cu2-xSe nanosheets (NSs) beginning with CdSe NSs. In this manner, extremely thin (i.e., 1.6 nm thickness) Cu2-xSe NSs,...