Wan, C.; Cui, X.; Liu, M.; Xu, B.; Sun, J.; Bai, S.
Structure Features and Physicochemical Performances of Fe-Contained Clinoptilolites Obtained via the Aqueous Exchange of the Balanced Cations and Isomorphs Substitution of the Heulandite Skeletons for Electrocatalytic Activity of Oxygen Evolution Reaction and Adsorptive Performance of CO2. Molecules 2023, 28, 2889.
https://doi.org/10.3390/molecules28072889
AMA Style
Wan C, Cui X, Liu M, Xu B, Sun J, Bai S.
Structure Features and Physicochemical Performances of Fe-Contained Clinoptilolites Obtained via the Aqueous Exchange of the Balanced Cations and Isomorphs Substitution of the Heulandite Skeletons for Electrocatalytic Activity of Oxygen Evolution Reaction and Adsorptive Performance of CO2. Molecules. 2023; 28(7):2889.
https://doi.org/10.3390/molecules28072889
Chicago/Turabian Style
Wan, Chunlei, Xueqing Cui, Ming Liu, Bang Xu, Jihong Sun, and Shiyang Bai.
2023. "Structure Features and Physicochemical Performances of Fe-Contained Clinoptilolites Obtained via the Aqueous Exchange of the Balanced Cations and Isomorphs Substitution of the Heulandite Skeletons for Electrocatalytic Activity of Oxygen Evolution Reaction and Adsorptive Performance of CO2" Molecules 28, no. 7: 2889.
https://doi.org/10.3390/molecules28072889
APA Style
Wan, C., Cui, X., Liu, M., Xu, B., Sun, J., & Bai, S.
(2023). Structure Features and Physicochemical Performances of Fe-Contained Clinoptilolites Obtained via the Aqueous Exchange of the Balanced Cations and Isomorphs Substitution of the Heulandite Skeletons for Electrocatalytic Activity of Oxygen Evolution Reaction and Adsorptive Performance of CO2. Molecules, 28(7), 2889.
https://doi.org/10.3390/molecules28072889