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Employment (1)

C2N / Centre for Nanoscience and Nanotechnology: Palaiseau, Paris, FR

2021-10-01 to 2024-09-30 | PhD student (Electronics and Optoelectronics, Nano- and Microtechnologies)
Employment
Source: Self-asserted source
NESSRINE JEBARI

Works (8)

3D Simulation-Driven Design of a Microfluidic Immunosensor for Real-Time Monitoring of Sweat Biomarkers

Micromachines
2024-07-23 | Journal article
Contributors: Nessrine Jebari; Elisabeth Dufour-Gergam; Mehdi Ammar
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Crossref
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3D Simulation-Driven Design of a Microfluidic Immunosensor for Real-Time Monitoring of Sweat Biomarkers

2024-07-10 | Preprint
Contributors: Nessrine JEBARI; Elisabeth Dufour-Gergam; Mehdi AMMAR
Source: check_circle
Crossref

An advanced magnetic-labeled immunosensor for the detection of biomarkers in sweat: 3D multiphysics simulation and preliminary microfabrication results

2024-06-05 | Other
Contributors: Nessrine Jebari; David Bouville; Elisabeth Dufour-Gergam; Mehdi Ammar
Source: Self-asserted source
NESSRINE JEBARI via HAL

Bactericidal activity of ZnO nanoparticles against multidrug-resistant bacteria

Journal of Molecular Liquids
2023-10 | Journal article
Part of ISSN: 0167-7322
Contributors: Sarra Riahi; Nizar Ben Moussa; Mohamed Lajnef; Nessrine Jebari; Ali Dabek; Radhouane Chtourou; Grégory Guisbiers; Sophie Vimont; Etienne Herth
Source: Self-asserted source
NESSRINE JEBARI

An advanced Magnetic-labeled immunosensor for the detection of biomarkers in sweat: 3D multiphysics simulation and preliminary microfabrication results

2023-06-05 | Other
Contributors: Mehdi Ammar; Nessrine Jebari
Source: Self-asserted source
NESSRINE JEBARI via HAL

CMOS Compatible Al‐Doped ZnO Sol–Gel Thin‐Film Properties

physica status solidi (a)
2022-04 | Journal article
Part of ISSN: 1862-6300
Part of ISSN: 1862-6319
Contributors: NESSRINE JEBARI
Source: Self-asserted source
NESSRINE JEBARI

Synthesis of ZnO sol–gel thin-films CMOS-Compatible

RSC Advances
2021 | Journal article
Part of ISSN: 2046-2069
Source: Self-asserted source
NESSRINE JEBARI

Electric-Field-Induced Phase Change in Copper Oxide Nanostructures

ACS Omega
2021-12-07 | Journal article
Part of ISSN: 2470-1343
Part of ISSN: 2470-1343
Source: Self-asserted source
NESSRINE JEBARI