A. B. Coskuner Et Al. , "Tuning the lattice strain through manipulating crystal structure of high entropy oxides enhances electrocatalytic performance," Materials Research Bulletin , vol.186, 2025
Coskuner, A. B. Et Al. 2025. Tuning the lattice strain through manipulating crystal structure of high entropy oxides enhances electrocatalytic performance. Materials Research Bulletin , vol.186 .
Coskuner, A. B., ERDİL, T., ÖZGÜR, Ç., Geyikci, U., & TOPARLI, Ç., (2025). Tuning the lattice strain through manipulating crystal structure of high entropy oxides enhances electrocatalytic performance. Materials Research Bulletin , vol.186.
Coskuner, Ali Et Al. "Tuning the lattice strain through manipulating crystal structure of high entropy oxides enhances electrocatalytic performance," Materials Research Bulletin , vol.186, 2025
Coskuner, Ali B. Et Al. "Tuning the lattice strain through manipulating crystal structure of high entropy oxides enhances electrocatalytic performance." Materials Research Bulletin , vol.186, 2025
Coskuner, A. B. Et Al. (2025) . "Tuning the lattice strain through manipulating crystal structure of high entropy oxides enhances electrocatalytic performance." Materials Research Bulletin , vol.186.
@article{article, author={Ali Burcay Coskuner Et Al. }, title={Tuning the lattice strain through manipulating crystal structure of high entropy oxides enhances electrocatalytic performance}, journal={Materials Research Bulletin}, year=2025}