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Growth and temperature-tuned band gap characteristics of LiGd(MoO4)2 single crystals for optoelectronic applications
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S. Delice Et Al. , "Growth and temperature-tuned band gap characteristics of LiGd(MoO4)2 single crystals for optoelectronic applications," Ceramics International , vol.49, no.15, pp.25840-25847, 2023

Delice, S. Et Al. 2023. Growth and temperature-tuned band gap characteristics of LiGd(MoO4)2 single crystals for optoelectronic applications. Ceramics International , vol.49, no.15 , 25840-25847.

Delice, S., Isik, M., HASANLI, N., Darvishov, N., & Bagiev, V., (2023). Growth and temperature-tuned band gap characteristics of LiGd(MoO4)2 single crystals for optoelectronic applications. Ceramics International , vol.49, no.15, 25840-25847.

Delice, S. Et Al. "Growth and temperature-tuned band gap characteristics of LiGd(MoO4)2 single crystals for optoelectronic applications," Ceramics International , vol.49, no.15, 25840-25847, 2023

Delice, S. Et Al. "Growth and temperature-tuned band gap characteristics of LiGd(MoO4)2 single crystals for optoelectronic applications." Ceramics International , vol.49, no.15, pp.25840-25847, 2023

Delice, S. Et Al. (2023) . "Growth and temperature-tuned band gap characteristics of LiGd(MoO4)2 single crystals for optoelectronic applications." Ceramics International , vol.49, no.15, pp.25840-25847.

@article{article, author={S. Delice Et Al. }, title={Growth and temperature-tuned band gap characteristics of LiGd(MoO4)2 single crystals for optoelectronic applications}, journal={Ceramics International}, year=2023, pages={25840-25847} }