Lin, Q.; Zhang, F.; Zhao, N.; Zhao, L.; Wang, Z.; Yang, P.; Lu, D.; Dong, T.; Jiang, Z.
A Flexible and Wearable Nylon Fiber Sensor Modified by Reduced Graphene Oxide and ZnO Quantum Dots for Wide-Range NO2 Gas Detection at Room Temperature. Materials 2022, 15, 3772.
https://doi.org/10.3390/ma15113772
AMA Style
Lin Q, Zhang F, Zhao N, Zhao L, Wang Z, Yang P, Lu D, Dong T, Jiang Z.
A Flexible and Wearable Nylon Fiber Sensor Modified by Reduced Graphene Oxide and ZnO Quantum Dots for Wide-Range NO2 Gas Detection at Room Temperature. Materials. 2022; 15(11):3772.
https://doi.org/10.3390/ma15113772
Chicago/Turabian Style
Lin, Qijing, Fuzheng Zhang, Na Zhao, Libo Zhao, Zuowei Wang, Ping Yang, Dejiang Lu, Tao Dong, and Zhuangde Jiang.
2022. "A Flexible and Wearable Nylon Fiber Sensor Modified by Reduced Graphene Oxide and ZnO Quantum Dots for Wide-Range NO2 Gas Detection at Room Temperature" Materials 15, no. 11: 3772.
https://doi.org/10.3390/ma15113772
APA Style
Lin, Q., Zhang, F., Zhao, N., Zhao, L., Wang, Z., Yang, P., Lu, D., Dong, T., & Jiang, Z.
(2022). A Flexible and Wearable Nylon Fiber Sensor Modified by Reduced Graphene Oxide and ZnO Quantum Dots for Wide-Range NO2 Gas Detection at Room Temperature. Materials, 15(11), 3772.
https://doi.org/10.3390/ma15113772