Wu, Q.; Huang, S.; Wang, S.; Zhou, X.; Shi, Y.; Zhou, X.; Gong, X.; Tao, Y.; Liu, W.
A Numerical Investigation of Enhanced Microfluidic Immunoassay by Multiple-Frequency Alternating-Current Electrothermal Convection. Appl. Sci. 2025, 15, 4748.
https://doi.org/10.3390/app15094748
AMA Style
Wu Q, Huang S, Wang S, Zhou X, Shi Y, Zhou X, Gong X, Tao Y, Liu W.
A Numerical Investigation of Enhanced Microfluidic Immunoassay by Multiple-Frequency Alternating-Current Electrothermal Convection. Applied Sciences. 2025; 15(9):4748.
https://doi.org/10.3390/app15094748
Chicago/Turabian Style
Wu, Qisheng, Shaohua Huang, Shenghai Wang, Xiying Zhou, Yuxuan Shi, Xiwei Zhou, Xianwu Gong, Ye Tao, and Weiyu Liu.
2025. "A Numerical Investigation of Enhanced Microfluidic Immunoassay by Multiple-Frequency Alternating-Current Electrothermal Convection" Applied Sciences 15, no. 9: 4748.
https://doi.org/10.3390/app15094748
APA Style
Wu, Q., Huang, S., Wang, S., Zhou, X., Shi, Y., Zhou, X., Gong, X., Tao, Y., & Liu, W.
(2025). A Numerical Investigation of Enhanced Microfluidic Immunoassay by Multiple-Frequency Alternating-Current Electrothermal Convection. Applied Sciences, 15(9), 4748.
https://doi.org/10.3390/app15094748