Mulberry Juice-Derived Carbon Quantum Dots as a Cu2+ Ion Sensor: Investigating the Influence of Fruit Ripeness on the Optical Properties
Chiayee Salih Ajaj et al · SAGE Publishing · 2023
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APA 7
al, C. S. A. E. (2023). Mulberry Juice-Derived Carbon Quantum Dots as a Cu2+ Ion Sensor: Investigating the Influence of Fruit Ripeness on the Optical Properties. https://doi.org/10.1155/2023/9980479
MLA
al, Chiayee Salih Ajaj et. "Mulberry Juice-Derived Carbon Quantum Dots as a Cu2+ Ion Sensor: Investigating the Influence of Fruit Ripeness on the Optical Properties." 2023. https://doi.org/10.1155/2023/9980479.
Chicago
al, Chiayee Salih Ajaj et. 2023. "Mulberry Juice-Derived Carbon Quantum Dots as a Cu2+ Ion Sensor: Investigating the Influence of Fruit Ripeness on the Optical Properties.". https://doi.org/10.1155/2023/9980479.
Harvard
al, C. S. A. E. 2023, Mulberry Juice-Derived Carbon Quantum Dots as a Cu2+ Ion Sensor: Investigating the Influence of Fruit Ripeness on the Optical Properties, SAGE Publishing, available at: https://doi.org/10.1155/2023/9980479 [Accessed 6 Aug. 2026].
Ressourcendetails
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- Titel
- Mulberry Juice-Derived Carbon Quantum Dots as a Cu2+ Ion Sensor: Investigating the Influence of Fruit Ripeness on the Optical Properties
- Autor / Mitwirkende
- Chiayee Salih Ajaj et al
- Verlag
- SAGE Publishing
- Erscheinungsjahr
- 2023
- ISSN
- 1847-9804
- ISSN
- 1847-9804
- Sprache
- Inglés