QUantum-effect-based Nanosensing and imaging: Novel glass-diamond photonic approach for the next generation biodiagnostic applications - Project - Bridge of Knowledge

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QUantum-effect-based Nanosensing and imaging: Novel glass-diamond photonic approach for the next generation biodiagnostic applications

Projekt konsorcyjny B+R ukierunkowany na badania o wysokiem aspekcie aplikacyjnym. W projekcie przewidywane są najwyższej jakości publikacje z listy JCR oraz opracowanie nowej usługi lub produktu.

Details

Project's acronym:
QUNNA
Financial Program Name:
Program Operacyjny Inteligentny Rozwój
Organization:
Fundacja na Rzecz Nauki Polskiej (Foundation for Polish Science)
Agreement:
POIR.04.04.00-00-1644/18-00 z dnia 2019-07-10
Realisation period:
2019-07-01 - 2023-09-28
Research team leader:
dr hab. inż. Robert Bogdanowicz
Realised in:
Department of Metrology and Optoelectronics
External institutions
participating in project:
  • Instytut Biotechnologii i Medycyny Molekularnej (Poland)
  • Uniwersytet Warszawski (Poland)
  • Uniwersytet Jagielloński (Poland)
Project's value:
18 647 075.00 PLN
Request type:
European Founds
Domestic:
Domestic project
Verified by:
Gdańsk University of Technology

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total: 17

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Catalog Projects

Year 2024

Year 2023

  • Nanodiamonds Doped with Manganese for Applications in Magnetic Resonance Imaging
    Publication
    • S. Kunuku
    • B. Lin
    • C. Chen
    • C. Chang
    • T. Chen
    • T. Hsiao
    • H. Yu
    • Y. Chang
    • L. Liao
    • F. Chen... and 2 others

    - ACS Omega - Year 2023

    Nanodiamonds (NDs) are emerging with great potential in biomedical applications like biomarking through fluorescence and magnetic resonance imaging (MRI), targeted drug delivery, and cancer therapy. The magnetic and optical properties of NDs could be tuned by selective doping. Therefore, we report multifunctional manganese-incorporated NDs (Mn-NDs) fabricated by Mn ion implantation. The fluorescent properties of Mn-NDs were tuned...

    Full text available to download

  • Nonlinearity shaping in nanostructured glass-diamond hybrid materials for optical fiber preforms
    Publication
    • G. Stępniewski
    • P. Hänzi
    • A. Filipkowski
    • M. Janik
    • M. Mrózek
    • Y. Stepanenko
    • R. Bogdanowicz
    • V. Romano
    • A. Heidt
    • R. Buczyński
    • M. Klimczak

    - CARBON - Year 2023

    Nanodiamond integration with optical fibers has proved a compelling methodology for magneto-optics. We reveal that the applicability of nanodiamonds in nonlinear optics goes beyond the previous demonstrations of frequency converters. Instead, we exploit the recently reported volumetric integration of nanodiamonds along the optical fiber core and show that the nonlinear response of glasses can be manipulated by nanodiamonds. By...

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Year 2022

Year 2021

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