Jia, S.; Zhang, X.; Ma, J.; Ma, C.; Yu, X.; Wang, Y.
Prussian Blue Analogue-Derived p-n Junction Heterostructure for Photothermal Reverse Water–Gas Shift: Enhanced Activity and Selectivity via Synergistic Effects. Nanomaterials 2025, 15, 904.
https://doi.org/10.3390/nano15120904
AMA Style
Jia S, Zhang X, Ma J, Ma C, Yu X, Wang Y.
Prussian Blue Analogue-Derived p-n Junction Heterostructure for Photothermal Reverse Water–Gas Shift: Enhanced Activity and Selectivity via Synergistic Effects. Nanomaterials. 2025; 15(12):904.
https://doi.org/10.3390/nano15120904
Chicago/Turabian Style
Jia, Shaorui, Xinbo Zhang, Junhong Ma, Chaoyun Ma, Xue Yu, and Yuanhao Wang.
2025. "Prussian Blue Analogue-Derived p-n Junction Heterostructure for Photothermal Reverse Water–Gas Shift: Enhanced Activity and Selectivity via Synergistic Effects" Nanomaterials 15, no. 12: 904.
https://doi.org/10.3390/nano15120904
APA Style
Jia, S., Zhang, X., Ma, J., Ma, C., Yu, X., & Wang, Y.
(2025). Prussian Blue Analogue-Derived p-n Junction Heterostructure for Photothermal Reverse Water–Gas Shift: Enhanced Activity and Selectivity via Synergistic Effects. Nanomaterials, 15(12), 904.
https://doi.org/10.3390/nano15120904