Li, W.; Niu, Q.; Pang, X.; Li, S.; Liu, Y.; Li, B.; Li, S.; Wang, L.; Guo, H.; Wang, L.
Optimized Sensitivity in Copper(II) Ion Detection: Sustainable Fabrication of Fluorescence Red-Shifted Graphene Quantum Dots via Electron-Withdrawing Modulation. Molecules 2025, 30, 1244.
https://doi.org/10.3390/molecules30061244
AMA Style
Li W, Niu Q, Pang X, Li S, Liu Y, Li B, Li S, Wang L, Guo H, Wang L.
Optimized Sensitivity in Copper(II) Ion Detection: Sustainable Fabrication of Fluorescence Red-Shifted Graphene Quantum Dots via Electron-Withdrawing Modulation. Molecules. 2025; 30(6):1244.
https://doi.org/10.3390/molecules30061244
Chicago/Turabian Style
Li, Weitao, Qian Niu, Xinglong Pang, Shang Li, Yang Liu, Boyu Li, Shuangyan Li, Lei Wang, Huazhang Guo, and Liang Wang.
2025. "Optimized Sensitivity in Copper(II) Ion Detection: Sustainable Fabrication of Fluorescence Red-Shifted Graphene Quantum Dots via Electron-Withdrawing Modulation" Molecules 30, no. 6: 1244.
https://doi.org/10.3390/molecules30061244
APA Style
Li, W., Niu, Q., Pang, X., Li, S., Liu, Y., Li, B., Li, S., Wang, L., Guo, H., & Wang, L.
(2025). Optimized Sensitivity in Copper(II) Ion Detection: Sustainable Fabrication of Fluorescence Red-Shifted Graphene Quantum Dots via Electron-Withdrawing Modulation. Molecules, 30(6), 1244.
https://doi.org/10.3390/molecules30061244