dr inż. Mateusz Ficek | Politechnika Gdańska

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dr inż. Mateusz Ficek

Kontakt:

email:
matficek@pg.edu.pl
strona:
https://mostwiedzy.pl/mateusz-ficek,133801-1

Zajmowane stanowiska:

Adiunkt

miejsce pracy:
Katedra Metrologii i Optoelektroniki
Budynek A Wydziału Elektroniki, Telekomunikacji i Informatyki, EA 346
telefon:
(58) 347 24 82
dr inż. Mateusz Ficek

Publikacje:

  1. Publikacja

    - MEASUREMENT - Rok 2024

    This paper investigates the electrical properties of boron-doped diamond-graphene (B:DG) nanostructures, focusing on their semiconductor characteristics. These nanostructures are synthesized on fused silica glass and Si wafer substrates to compare their behaviour on different surfaces. A specialized measurement system, incorporating Python-automated code, was developed for an in-depth analysis of electronic properties under various...

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  2. Publikacja

    - JOURNAL OF COLLOID AND INTERFACE SCIENCE - Rok 2024

    Pre-treatment of diamond surface in low-temperature plasma for oxygenation and in acids for carboxylation was hypothesized to promote the branching density of the hyperbranched glycidol polymer. This was expected to increase the homogeneity of the branching level and suppress interactions with proteins. As a result, composite nanodiamonds with reduced hydrodynamic diameters that are maintained in physiological environments were...

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  3. Publikacja

    - DIAMOND AND RELATED MATERIALS - Rok 2024

    Diamond particles (DPs) show promise for advanced applications in bioimaging and quantum sensing due to the presence of defect centers. This work reports a unique growth process for diamond particles composed of nitrogen-vacancy centers (NV-DPs) using a methyl trityl amine (C20H19N) diamondoid seed, which acts as a nitrogen source for NV creation. Growth was performed via microwave plasma-assisted chemical vapor deposition in a...

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  4. Publikacja
    • A. Filipkowski
    • M. Mrózek
    • G. Stępniewski
    • M. Ficek
    • D. Pysz
    • W. Gawlik
    • R. Buczyński
    • A. M. Wojciechowski
    • M. Klimczak

    - APPLIED PHYSICS LETTERS - Rok 2024

    Integration of NV−-rich diamond with optical fibers enables guiding quantum information on the spin state of the NV− color center. Diamond-functionalized optical fiber sensors have been demonstrated with impressive sub-nanotesla magnetic field sensitivities over localized magnetic field sources, but their potential for distributed sensing remains unexplored. The volumetric incorporation of diamonds into the optical fiber core allows...

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  5. Publikacja
    • T. Kołodziej
    • M. Mrózek
    • S. Sengottuvel
    • M. Głowacki
    • M. Ficek
    • W. Gawlik
    • Z. Rajfur
    • A. M. Wojciechowski

    - Biomedical Optics Express - Rok 2024

    Cells and tissues are constantly exposed to chemical and physical signals that regulate physiological and pathological processes. This study explores the integration of two biophysical methods: traction force microscopy (TFM) and optically detected magnetic resonance (ODMR) to concurrently assess cellular traction forces and the local relative temperature. We present a novel elastic substrate with embedded nitrogen-vacancy microdiamonds...

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Projekty: