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Общее количество найденных документов : 24
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1.

Unidirectional anisotropy in ferromagnetic-ferrimagnetic film structures/G. I. Frolov [et al.] // TECHNICAL PHYSICS:AMER INST PHYSICS, 2005. т.Vol. 50,N Is. 12.-С.1605-1610
2.

Two-dimensional hybrid perovskite with high-sensitivity optical thermometry sensors/M. Guan, J. Hao, L. Qiu [et al.] // Inorganic Chemistry, 2024. т.Vol. 63,N Is. 8.-С.3835-3842
3.

Titanium oxynitride thin films wide temperature range sensors/F. A. Baron, L. V. Shanidze, M. V. Rautskiy [et al.] // Technical Physics Letters, 2022. т.Vol. 48,N Is. 10.-С.74-77
4.

Temperature and vibration OTDR measurements with a single mode-multimode-single mode fiber structure/A. Y. Igumenov, I. V. Melnikov, A. A. Afanasiev [et al.] // Proceedings of SPIE - Progress in Biomedical Optics and Imaging, 2023. т.Vol. 12372:Optical Fibers and Sensors for Medical Diagnostics, Treatment and Environmental Applications XXIII 2023 (28 - 30 January 2023, San Francisco, California, United States) Conference code: 187531.- Ст.123720P
5.

Study of dependence upon the magnetic field and transport current of the magnetoresistive effect in YBCO-based bulk composites/D. A. Balaev [et al.] // SUPERCONDUCTOR SCIENCE & TECHNOLOGY:IOP PUBLISHING LTD, 2007. т.Vol. 20,N Is. 6.-С.495-499
6.

Structural and magnetic properties of FeNi films and FeNi-based trilayers with out-of-plane magnetization component/A. V. Svalov, A. N. Gorkovenko, A. Larranaga [et al.] // Sensors, 2022. т.Vol. 22,N Is. 21.- Ст.8357
7.

Reflectometric measurement of temperature using a single-mode–multimode–single-mode fiber-optic structure/A. Y. Igumenov, I. V. Mel'nikov, A. A. Afanas'ev [et al.] // Technical Physics Letters, 2022. т.Vol. 48,N Is. 5.-С.227-229
8.

Ratio fluorescent hybrid probe for visualized fluorescence detection of H2O2 in vitro and in vivo/R. Dong, Y. Yao, D. Li [et al.] // Sensors and Actuators B: Chemical, 2020. т.Vol. 321.- Ст.128643
9.

Popov A. K. Remote sensing with nonlinear negative-index metamaterials/A. K. Popov, S. A. Myslivets // Proceedings of SPIE - The International Society for Optical Engineering:SPIE-Int. Soc. Optical Engineering, 2014. т.Vol. 9157.- Ст.91573B
10.

Phthalocyanine-carbon nanotube hybrid materials: Mechanism of sensor response to ammonia from quantum-chemical point of view/P. Krasnov, V. Ivanova, D. Klyamer [et al.] // Chemosensors, 2022. т.Vol. 10,N Is. 11.- Ст.479
11.

Nonlinear-optical up and down frequency-converting backward-wave metasensors and metamirrors/A. K. Popov [et al.] // Proceedings of SPIE - The International Society for Optical Engineering, 2013. т.Vol. 8725.- Ст.87252E
12.

Magnetoresistive effect in bulk composites 1-2-3 YBCO+CuO and 1-2-3 YBCO+BaPb(1-x)SnxO(3) and their application as magnetic field sensors at 77 K/D. A. Balaev [et al.] // SUPERCONDUCTOR SCIENCE & TECHNOLOGY:IOP PUBLISHING LTD, 2004. т.Vol. 17,N Is. 1.-С.175-181
13.

Magnetic properties of FeNi/Cu-based lithographic rectangular multilayered elements for magnetoimpedance applications/G. Yu. Melnikov, I. G. Vazhenina, R. S. Iskhakov [et al.] // Sensors, 2023. т.Vol. 23,N Is. 13.- Ст.6165
14.

Magnetic field dependence of intergrain pinning potential in bulk granular composites YBCO plus CuO demonstrating large magneto-resistive effect/D. A. Balaev [et al.] // Journal of Superconductivity and Novel Magnetism:SPRINGER, 2008. т.Vol. 21,N Is. 4.-С.243-247
15.

Low noise wideband thin-film magnetometer/A. N. Babitskii [et al.] // Proceedings of IEEE Sensors, 2017. т.Vol. 2017-December:16th IEEE SENSORS Conference, ICSENS 2017 (30 October 2017 through 1 November 2017, Glasgow, UK) Conference code: 132067.-С.1-3
16.

Low noise wideband thin-film magnetometer/А. Н. Бабицкий [et al.] // IEEE International Conference "Sensors-2017", 2017.-С.316-318
17.

Large magneto-resistance of high-T-C superconductor based composites to low magnetic fields at the liquid nitrogen temperature/D. A. Balaev [et al.] // PHYSICA C-SUPERCONDUCTIVITY AND ITS APPLICATIONS:ELSEVIER SCIENCE BV, 2004. т.Vol. 408:7th International Conference on Materials and Mechanisms of Superconductive and High Temperature Superconductors (MAY 25-30, 2003, Rio de Janeiro, BRAZIL).-С.943-944
18.

Heterostructures based on Pd–Au nanoparticles and cobalt phthalocyanine for hydrogen chemiresistive sensors/N. S. Nikolaeva, D. D. Klyamer, S. M. Zharkov [et al.] // International Journal of Hydrogen Energy, 2021. т.Vol. 46. Is. 37.-С.19682-19692
19.

Heterostructures based on cobalt phthalocyanine films decorated with gold nanoparticles for the detection of low concentrations of ammonia and nitric oxide/S. I. Dorovskikh, D. D. Klyamer, E. A. Maksimovskiy [et al.] // Biosensors, 2022. т.Vol. 12,N Is. 7.- Ст.476
20.

Endorsing a hidden plasmonic mode for enhancement of LSPR sensing performance in evolved metal–insulator geometry using an unsupervised machine learning algorithm/N. Bhalla, A. Thakur, I. S. Edelman, R. D. Ivantsov // ACS Physical Chemistry Au, 2022. т.Vol. 2,N Is. 6.-С.459-467
 

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