dr inż. Anna Dettlaff | Politechnika Gdańska

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dr inż. Anna Dettlaff

Kontakt:

email:
anna.dettlaff@pg.edu.pl
strona:
https://mostwiedzy.pl/anna-dettlaff,202390-1

Zajmowane stanowiska:

Adiunkt

miejsce pracy:
Katedra Konwersji i Magazynowania Energii
Budynek C Wydziału Chemicznego, 11
telefon:
+48 58 347 19 31
dr inż. Anna Dettlaff

Publikacje:

  1. This study demonstrates a highly efficient electrochemical sensing platform for 4-nitrotoluene (4-NT) detection based on nanoflake-rich boron-doped carbon nanowall (NF-BCNW) electrodes. The electrodes, fabricated using a one-step deposition process, exhibit remarkable properties, including fast charge transfer and a developed surface area. The research shows the high efficiency of 4-NT detection in laboratory-grade aqueous samples,...

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  2. Publikacja

    - ELECTROCHIMICA ACTA - Rok 2024

    A closed bipolar electrochemical cell containing two conductive boron-doped diamond (BDD) particles of size  250 – 350 m, produced by high-pressure high-temperature (HPHT) synthesis, has been used to demonstrate the applicability of single BDD particles for electrochemical oxidative degradation of the dye, methylene blue (MB). The cell is fabricated using stereolithography 3D printing and the BDD particles are located at either...

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  3. Publikacja

    - Scientific Reports - Rok 2024

    With growing public concern about water quality particular focus should be placed on organic micropollutants, which are harmful to the environment and people. Hence, the objective of this research is to enhance the security and resilience of water resources by developing an efficient system for reclaiming industrial/military wastewater and protecting recipients from the toxic and cancerogenic explosive compound – 2,4,6-trinitrotoluene...

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  4. There is growing interest in developing diamond electrodes with defined geometries such as, for example, micrometer-sized electrode arrays to acquire signals for electroanalysis. For electroanalytical sensing applications, it is essential to achieve precise conductive patterns on the insulating surface. This work provides a novel approach to boron-doped diamond patterning using nichrome masking for selective seeding on an oxidized...

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  5. Publikacja

    - CHEMICAL ENGINEERING JOURNAL - Rok 2024

    Nitroaromatic compounds are commonly used explosive materials that pose a risk to human health and ecosystems due to their acute toxicity and carcinogenicity. Nitroaromatics have numerous pathways into the environment via discarded munitions (e.g. into the Baltic Sea after World War II), after use in mining operations, and in industrial run-off from factories producing these compounds (which are produced across the world to date)....

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