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Yevhen Shynkarenko

Explore the profile of Yevhen Shynkarenko including associated specialties, affiliations and a list of published articles. Areas
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Articles 21
Citations 468
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Recent Articles
1.
Demuru S, Chai-Gao H, Shynkarenko Y, Hermann N, Boia P, Cristofolini P, et al.
Sensors (Basel) . 2024 Jun; 24(11). PMID: 38894075
With the steady increase in allergy prevalence worldwide, there is a strong need for novel diagnostic tools for precise, fast, and less invasive testing methods. Herein, a miniatured fluorescence-based biosensing...
2.
John R, Demirag Y, Shynkarenko Y, Berezovska Y, Ohannessian N, Payvand M, et al.
Nat Commun . 2022 Apr; 13(1):2074. PMID: 35440122
Many in-memory computing frameworks demand electronic devices with specific switching characteristics to achieve the desired level of computational complexity. Existing memristive devices cannot be reconfigured to meet the diverse volatile...
3.
Cherniukh I, Sekh T, Raino G, Ashton O, Burian M, Travesset A, et al.
ACS Nano . 2022 Apr; 16(5):7210-7232. PMID: 35385663
Nanocrystal (NC) self-assembly is a versatile platform for materials engineering at the mesoscale. The NC shape anisotropy leads to structures not observed with spherical NCs. This work presents a broad...
4.
Cherniukh I, Raino G, Sekh T, Zhu C, Shynkarenko Y, John R, et al.
ACS Nano . 2021 Sep; 15(10):16488-16500. PMID: 34549582
Self-assembly of colloidal nanocrystals (NCs) holds great promise in the multiscale engineering of solid-state materials, whereby atomically engineered NC building blocks are arranged into long-range ordered structures-superlattices (SLs)-with synergistic physical...
5.
Strassel K, Hu W, Osbild S, Padula D, Rentsch D, Yakunin S, et al.
Sci Technol Adv Mater . 2021 Apr; 22(1):194-204. PMID: 33907525
Shortwave infrared (SWIR) optical sensing and imaging are essential to an increasing number of next-generation applications in communications, process control or medical imaging. An all-organic SWIR upconversion device (OUC) consists...
6.
Yakunin S, Chaaban J, Benin B, Cherniukh I, Bernasconi C, Landuyt A, et al.
Nat Commun . 2021 Feb; 12(1):981. PMID: 33579913
Traditional fluorescence-based tags, used for anticounterfeiting, rely on primitive pattern matching and visual identification; additional covert security features such as fluorescent lifetime or pattern masking are advantageous if fraud is...
7.
Morad V, Yakunin S, Benin B, Shynkarenko Y, Grotevent M, Shorubalko I, et al.
Adv Mater . 2021 Jan; 33(9):e2007355. PMID: 33480450
Luminescent organic-inorganic low-dimensional ns metal halides are of rising interest as thermographic phosphors. The intrinsic nature of the excitonic self-trapping provides for reliable temperature sensing due to the existence of...
8.
Morad V, Cherniukh I, Pottschacher L, Shynkarenko Y, Yakunin S, Kovalenko M
Chem Mater . 2020 Sep; 31(24):10161-10169. PMID: 32952294
Finding narrow-band light emitters for the visible spectral region remains an immense challenge. Such phosphors are in great demand for solid-state lighting and display application. In this context, green luminescence...
9.
McCall K, Sakhatskyi K, Lehmann E, Walfort B, Losko A, Montanarella F, et al.
ACS Nano . 2020 Sep; 14(11):14686-14697. PMID: 32897688
Fast neutrons offer high penetration capabilities for both light and dense materials due to their comparatively low interaction cross sections, making them ideal for the imaging of large-scale objects such...
10.
Noculak A, Morad V, McCall K, Yakunin S, Shynkarenko Y, Worle M, et al.
Chem Mater . 2020 Jun; 32(12):5118-5124. PMID: 32595266
The vast structural and compositional space of metal halides has recently become a major research focus for designing inexpensive and versatile light sources; in particular, for applications in displays, solid-state...