Fu, S.; Pu, W.; Huang, Q.; Zhu, H.; Bie, J.; Liu, Q.; Zang, B.; Zhao, Z.; Wang, Y.; Wang, H.
Low Temperature Synthesis of Ag2MoO4/BiOCl Heterojunctions with Oxygen Vacancies for Improved Pollutant Degradation. Crystals 2026, 16, 435.
https://doi.org/10.3390/cryst16070435
AMA Style
Fu S, Pu W, Huang Q, Zhu H, Bie J, Liu Q, Zang B, Zhao Z, Wang Y, Wang H.
Low Temperature Synthesis of Ag2MoO4/BiOCl Heterojunctions with Oxygen Vacancies for Improved Pollutant Degradation. Crystals. 2026; 16(7):435.
https://doi.org/10.3390/cryst16070435
Chicago/Turabian Style
Fu, Shuai, Wanyu Pu, Qiang Huang, Huijie Zhu, Junhong Bie, Qi Liu, Bei Zang, Zhixi Zhao, Ying Wang, and Hongqiang Wang.
2026. "Low Temperature Synthesis of Ag2MoO4/BiOCl Heterojunctions with Oxygen Vacancies for Improved Pollutant Degradation" Crystals 16, no. 7: 435.
https://doi.org/10.3390/cryst16070435
APA Style
Fu, S., Pu, W., Huang, Q., Zhu, H., Bie, J., Liu, Q., Zang, B., Zhao, Z., Wang, Y., & Wang, H.
(2026). Low Temperature Synthesis of Ag2MoO4/BiOCl Heterojunctions with Oxygen Vacancies for Improved Pollutant Degradation. Crystals, 16(7), 435.
https://doi.org/10.3390/cryst16070435