Li, Y.; Tang, J.; Lin, Y.; Li, J.; Yang, Y.; Zhao, P.; Fei, J.; Xie, Y.
Ultrasensitive Determination of Natural Flavonoid Rutin Using an Electrochemical Sensor Based on Metal-Organic Framework CAU−1/Acidified Carbon Nanotubes Composites. Molecules 2022, 27, 7761.
https://doi.org/10.3390/molecules27227761
AMA Style
Li Y, Tang J, Lin Y, Li J, Yang Y, Zhao P, Fei J, Xie Y.
Ultrasensitive Determination of Natural Flavonoid Rutin Using an Electrochemical Sensor Based on Metal-Organic Framework CAU−1/Acidified Carbon Nanotubes Composites. Molecules. 2022; 27(22):7761.
https://doi.org/10.3390/molecules27227761
Chicago/Turabian Style
Li, Yuhong, Jianxiong Tang, Yueli Lin, Jiejun Li, Yaqi Yang, Pengcheng Zhao, Junjie Fei, and Yixi Xie.
2022. "Ultrasensitive Determination of Natural Flavonoid Rutin Using an Electrochemical Sensor Based on Metal-Organic Framework CAU−1/Acidified Carbon Nanotubes Composites" Molecules 27, no. 22: 7761.
https://doi.org/10.3390/molecules27227761
APA Style
Li, Y., Tang, J., Lin, Y., Li, J., Yang, Y., Zhao, P., Fei, J., & Xie, Y.
(2022). Ultrasensitive Determination of Natural Flavonoid Rutin Using an Electrochemical Sensor Based on Metal-Organic Framework CAU−1/Acidified Carbon Nanotubes Composites. Molecules, 27(22), 7761.
https://doi.org/10.3390/molecules27227761