Jońca, J.; Castello-Lux, K.; Fajerwerg, K.; Kahn, M.L.; Collière, V.; Menini, P.; Sówka, I.; Fau, P.
Gas Sensing Properties of CuWO4@WO3 n-n Heterojunction Prepared by Direct Hydrolysis of Mesitylcopper (I) on WO3·2H2O Nanoleaves. Chemosensors 2023, 11, 495.
https://doi.org/10.3390/chemosensors11090495
AMA Style
Jońca J, Castello-Lux K, Fajerwerg K, Kahn ML, Collière V, Menini P, Sówka I, Fau P.
Gas Sensing Properties of CuWO4@WO3 n-n Heterojunction Prepared by Direct Hydrolysis of Mesitylcopper (I) on WO3·2H2O Nanoleaves. Chemosensors. 2023; 11(9):495.
https://doi.org/10.3390/chemosensors11090495
Chicago/Turabian Style
Jońca, Justyna, Kevin Castello-Lux, Katia Fajerwerg, Myrtil L. Kahn, Vincent Collière, Philippe Menini, Izabela Sówka, and Pierre Fau.
2023. "Gas Sensing Properties of CuWO4@WO3 n-n Heterojunction Prepared by Direct Hydrolysis of Mesitylcopper (I) on WO3·2H2O Nanoleaves" Chemosensors 11, no. 9: 495.
https://doi.org/10.3390/chemosensors11090495
APA Style
Jońca, J., Castello-Lux, K., Fajerwerg, K., Kahn, M. L., Collière, V., Menini, P., Sówka, I., & Fau, P.
(2023). Gas Sensing Properties of CuWO4@WO3 n-n Heterojunction Prepared by Direct Hydrolysis of Mesitylcopper (I) on WO3·2H2O Nanoleaves. Chemosensors, 11(9), 495.
https://doi.org/10.3390/chemosensors11090495