» Authors » Denys Makarov

Denys Makarov

Explore the profile of Denys Makarov including associated specialties, affiliations and a list of published articles. Areas
Snapshot
Articles 92
Citations 807
Followers 0
Related Specialties
Top 10 Co-Authors
Published In
Affiliations
Soon will be listed here.
Recent Articles
1.
Lugoda P, Oliveros-Mata E, Marasinghe K, Bhaumik R, Pretto N, Oliveira C, et al.
Commun Eng . 2025 Feb; 4(1):33. PMID: 40000762
Miniature electronics positioned within textile braids leverages the persistent flexibility and comfort of textiles constructed from electronics with 1D form factors. Here, we developed touchless interactivity within textiles using 1D...
2.
Makushko P, Ge J, Canon Bermudez G, Volkov O, Zabila Y, Avdoshenko S, et al.
Nat Commun . 2025 Feb; 16(1):1647. PMID: 39952943
Electronic skins (e-skins) seek to go beyond the natural human perception, e.g., by creating magnetoperception to sense and interact with omnipresent magnetic fields. However, realizing magnetoreceptive e-skin with spatially continuous...
3.
Salikhov R, Lysne M, Werner P, Ilyakov I, Schuler M, Oliveira T, et al.
Npj Spintron . 2025 Jan; 3(1):3. PMID: 39882020
The interplay of electronic charge, spin, and orbital currents, coherently driven by picosecond long oscillations of light fields in spin-orbit coupled systems, is the foundation of emerging terahertz lightwave spintronics...
4.
Bezsmertna O, Xu R, Pylypovskyi O, Raftrey D, Sorrentino A, Fernandez-Roldan J, et al.
Nano Lett . 2024 Nov; 24(49):15774-15780. PMID: 39590933
Curvilinear magnetism emerged as a new route to tailor properties of magnetic solitons by the choice of geometry and topology of a magnetic architecture. Here, we develop an anodized aluminum...
5.
Gubbiotti G, Barman A, Ladak S, Bran C, Grundler D, Huth M, et al.
J Phys Condens Matter . 2024 Nov; 37(14). PMID: 39577093
The transition from planar to three-dimensional (3D) magnetic nanostructures represents a significant advancement in both fundamental research and practical applications, offering vast potential for next-generation technologies like ultrahigh-density storage, memory,...
6.
Rickhaus P, Pylypovskyi O, Seniutinas G, Borras V, Lehmann P, Wagner K, et al.
Nano Lett . 2024 Oct; 24(42):13172-13178. PMID: 39387710
Magnetism of oxide antiferromagnets (AFMs) has been studied in single crystals and extended thin films. The properties of AFM nanostructures still remain underexplored. Here, we report on the fabrication and...
7.
Wang X, Guo L, Bezsmertna O, Wu Y, Makarov D, Xu R
J Mater Chem A Mater . 2024 Sep; 12(37):24906-24915. PMID: 39234481
We have developed an innovative recyclable printed magnetoresistive sensor using GMR microflakes and AMR microparticles as functional fillers, with PECH as the elastomer binder. Under saturation magnetic fields of 100...
8.
Pylypovskyi O, Weber S, Makushko P, Veremchuk I, Spaldin N, Makarov D
Phys Rev Lett . 2024 Jun; 132(22):226702. PMID: 38877951
Antiferromagnets are normally thought of as materials with compensated magnetic sublattices. This adds to their technological advantages but complicates readout of the antiferromagnetic state. We demonstrate theoretically the existence of...
9.
Chae S, Choi W, Nebel L, Cho C, Besford Q, Knapp A, et al.
Nat Commun . 2024 Apr; 15(1):3071. PMID: 38594231
Nanophase mixtures, leveraging the complementary strengths of each component, are vital for composites to overcome limitations posed by single elemental materials. Among these, metal-elastomer nanophases are particularly important, holding various...
10.
Janicijevic Z, Huang T, Bojorquez D, Tonmoy T, Pane S, Makarov D, et al.
Adv Sci (Weinh) . 2024 Mar; 11(20):e2307232. PMID: 38484201
With the ever-growing requirements in the healthcare sector aimed at personalized diagnostics and treatment, continuous and real-time monitoring of relevant parameters is gaining significant traction. In many applications, health status...