Cite
Defect chemistry and oxygen non-stoichiometry in SrFe0.2Co0.4Mo0.4O3-δ ceramic oxide for solid oxide fuel cells
MLA
Eric D. Wachsman, et al. “Defect Chemistry and Oxygen Non-Stoichiometry in SrFe0.2Co0.4Mo0.4O3-δ Ceramic Oxide for Solid Oxide Fuel Cells.” Ionics, vol. 26, July 2020, pp. 5641–49. EBSCOhost, widgets.ebscohost.com/prod/customlink/proxify/proxify.php?count=1&encode=0&proxy=&find_1=&replace_1=&target=https://search.ebscohost.com/login.aspx?direct=true&site=eds-live&scope=site&db=edsair&AN=edsair.doi...........128a6e4007f214d50a43b7fd8ebc07c1&authtype=sso&custid=ns315887.
APA
Eric D. Wachsman, A. Mohammed Hussain, Patrick Stanley, J. Evans Gritton, & Yi-Lin Huang. (2020). Defect chemistry and oxygen non-stoichiometry in SrFe0.2Co0.4Mo0.4O3-δ ceramic oxide for solid oxide fuel cells. Ionics, 26, 5641–5649.
Chicago
Eric D. Wachsman, A. Mohammed Hussain, Patrick Stanley, J. Evans Gritton, and Yi-Lin Huang. 2020. “Defect Chemistry and Oxygen Non-Stoichiometry in SrFe0.2Co0.4Mo0.4O3-δ Ceramic Oxide for Solid Oxide Fuel Cells.” Ionics 26 (July): 5641–49. http://widgets.ebscohost.com/prod/customlink/proxify/proxify.php?count=1&encode=0&proxy=&find_1=&replace_1=&target=https://search.ebscohost.com/login.aspx?direct=true&site=eds-live&scope=site&db=edsair&AN=edsair.doi...........128a6e4007f214d50a43b7fd8ebc07c1&authtype=sso&custid=ns315887.