dr hab. inż. Joanna Krakowiak | Gdańsk University of Technology

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dr hab. inż. Joanna Krakowiak

Contact:

email:
joakrako@pg.edu.pl
website:
https://mostwiedzy.pl/joanna-krakowiak,16058-1

Positions:

Associate professor

workplace:
Katedra Chemii Fizycznej
Budynek A Wydziału Chemicznego, 203
phone:
(58) 347 11 10
dr hab. inż. Joanna Krakowiak

Publications:

  1. Publication

    - JOURNAL OF MOLECULAR LIQUIDS - Year 2024

    The properties of the ternary systems N,N,N’,N’-tetramethylurea - N-methylacetamide - water were investigated using Fourier-transform infrared spectroscopy (FTIR), volumetric and compression measurements. Densities and sound velocities were determined in order to obtain the apparent molar volumes (VΦ) and apparent molar isentropic compressions (ΚS,Φ). These values were then extrapolated to infinite dilution. Additionally, interaction parameters...

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  2. This article presents an innovative approach to monitor working redox flow batteries using dynamic electrochemical impedance spectroscopy, diverging from the commonly sequential impedance methods carried out under potentiostatic or galvanostatic conditions close to the open circle voltage. The authors introduce a fresh variation of dynamic impedance measurement that leverages an amplitude-modulated multi-frequency alternating current...

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  3. Publication

    - Year 2022

    Rozwój i wzrost udziału energii odnawialnej, ze względu na kurczące się zasoby konwencjonalnych źródeł energii i ochronę środowiska, jest możliwy tylko dzięki współpracującym z nimi odpowiednim stacjonarnym magazynom energii. Technologia baterii przepływowych (ang. redox flow batteries, RFB) pozwala świetnie zaspokoić tego typu potrzeby ze względu na: (i) wyjątkowo dużą skalowalność układów; (ii) niezależny dobór mocy i pojemności...

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  4. Publication

    - MOLECULES - Year 2022

    Redox flow batteries (RFBs) are an increasingly attractive option for renewable energy storage, thus providing flexibility for the supply of electrical energy. In recent years, research in this type of battery storage has been shifted from metal-ion based electrolytes to soluble organic redox-active compounds. Aqueous-based organic electrolytes are considered as more promising electrolytes to achieve “green”, safe, and low-cost...

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Projects: