Kowalska-Kuś, J.; Malaika, A.; Held, A.; Jankowska, A.; Janiszewska, E.; Zieliński, M.; Nowińska, K.; Kowalak, S.; Końska, K.; Wróblewski, K.
Synthesis of Solketal Catalyzed by Acid-Modified Pyrolytic Carbon Black from Waste Tires. Molecules 2024, 29, 4102.
https://doi.org/10.3390/molecules29174102
AMA Style
Kowalska-Kuś J, Malaika A, Held A, Jankowska A, Janiszewska E, Zieliński M, Nowińska K, Kowalak S, Końska K, Wróblewski K.
Synthesis of Solketal Catalyzed by Acid-Modified Pyrolytic Carbon Black from Waste Tires. Molecules. 2024; 29(17):4102.
https://doi.org/10.3390/molecules29174102
Chicago/Turabian Style
Kowalska-Kuś, Jolanta, Anna Malaika, Agnieszka Held, Aldona Jankowska, Ewa Janiszewska, Michał Zieliński, Krystyna Nowińska, Stanisław Kowalak, Klaudia Końska, and Krzysztof Wróblewski.
2024. "Synthesis of Solketal Catalyzed by Acid-Modified Pyrolytic Carbon Black from Waste Tires" Molecules 29, no. 17: 4102.
https://doi.org/10.3390/molecules29174102
APA Style
Kowalska-Kuś, J., Malaika, A., Held, A., Jankowska, A., Janiszewska, E., Zieliński, M., Nowińska, K., Kowalak, S., Końska, K., & Wróblewski, K.
(2024). Synthesis of Solketal Catalyzed by Acid-Modified Pyrolytic Carbon Black from Waste Tires. Molecules, 29(17), 4102.
https://doi.org/10.3390/molecules29174102