Zhang, J.; Huang, H.; Peng, J.; Li, C.; Dong, H.; Kong, S.; Xie, Y.; Wu, R.; Wen, M.; Wu, F.
A Cost-Effective Long-Wave Infrared Detector Material Based on Graphene@PtSe2/HfSe2 Bidirectional Heterostructure: A First-Principles Study. Crystals 2022, 12, 1244.
https://doi.org/10.3390/cryst12091244
AMA Style
Zhang J, Huang H, Peng J, Li C, Dong H, Kong S, Xie Y, Wu R, Wen M, Wu F.
A Cost-Effective Long-Wave Infrared Detector Material Based on Graphene@PtSe2/HfSe2 Bidirectional Heterostructure: A First-Principles Study. Crystals. 2022; 12(9):1244.
https://doi.org/10.3390/cryst12091244
Chicago/Turabian Style
Zhang, Jianzhi, Hongfu Huang, Junhao Peng, Chuyu Li, Huafeng Dong, Sifan Kong, Yiyuan Xie, Runqian Wu, Minru Wen, and Fugen Wu.
2022. "A Cost-Effective Long-Wave Infrared Detector Material Based on Graphene@PtSe2/HfSe2 Bidirectional Heterostructure: A First-Principles Study" Crystals 12, no. 9: 1244.
https://doi.org/10.3390/cryst12091244
APA Style
Zhang, J., Huang, H., Peng, J., Li, C., Dong, H., Kong, S., Xie, Y., Wu, R., Wen, M., & Wu, F.
(2022). A Cost-Effective Long-Wave Infrared Detector Material Based on Graphene@PtSe2/HfSe2 Bidirectional Heterostructure: A First-Principles Study. Crystals, 12(9), 1244.
https://doi.org/10.3390/cryst12091244