Ouyang, J.; Yu, X.; Wang, M.; Wang, L.; Li, Z.; Shi, C.; Li, H.; Yuan, Y.; Zhou, J.; Chang, M.
The Synergistic Effect of Electric-Field and Adsorption Enhancement of Amino Acid Carbon Dots Significantly Improves the Detection Sensitivity of SPR Sensors. Sensors 2025, 25, 3903.
https://doi.org/10.3390/s25133903
AMA Style
Ouyang J, Yu X, Wang M, Wang L, Li Z, Shi C, Li H, Yuan Y, Zhou J, Chang M.
The Synergistic Effect of Electric-Field and Adsorption Enhancement of Amino Acid Carbon Dots Significantly Improves the Detection Sensitivity of SPR Sensors. Sensors. 2025; 25(13):3903.
https://doi.org/10.3390/s25133903
Chicago/Turabian Style
Ouyang, Jing, Xiantong Yu, Mengjie Wang, Longfei Wang, Zhao Li, Chaojun Shi, Hao Li, Yufeng Yuan, Jun Zhou, and Min Chang.
2025. "The Synergistic Effect of Electric-Field and Adsorption Enhancement of Amino Acid Carbon Dots Significantly Improves the Detection Sensitivity of SPR Sensors" Sensors 25, no. 13: 3903.
https://doi.org/10.3390/s25133903
APA Style
Ouyang, J., Yu, X., Wang, M., Wang, L., Li, Z., Shi, C., Li, H., Yuan, Y., Zhou, J., & Chang, M.
(2025). The Synergistic Effect of Electric-Field and Adsorption Enhancement of Amino Acid Carbon Dots Significantly Improves the Detection Sensitivity of SPR Sensors. Sensors, 25(13), 3903.
https://doi.org/10.3390/s25133903