Cite
Enhanced Zn2+ transfer dynamics via a 3D bird nest-like VO2/MXene heterojunction for ultrahigh-rate aqueous zinc-ion batteries
MLA
Weizhi Kou, et al. “Enhanced Zn2+ Transfer Dynamics via a 3D Bird Nest-like VO2/MXene Heterojunction for Ultrahigh-Rate Aqueous Zinc-Ion Batteries.” Journal of Power Sources, vol. 520, Feb. 2022, p. 230872. 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...........3a2566094687eed2aa8c6a7ddb792d73&authtype=sso&custid=ns315887.
APA
Weizhi Kou, Lei Yu, Qian Wang, Yujie Yang, Tinghai Yang, Hongbo Geng, Xiaowei Miao, Biao Gao, & Gang Yang. (2022). Enhanced Zn2+ transfer dynamics via a 3D bird nest-like VO2/MXene heterojunction for ultrahigh-rate aqueous zinc-ion batteries. Journal of Power Sources, 520, 230872.
Chicago
Weizhi Kou, Lei Yu, Qian Wang, Yujie Yang, Tinghai Yang, Hongbo Geng, Xiaowei Miao, Biao Gao, and Gang Yang. 2022. “Enhanced Zn2+ Transfer Dynamics via a 3D Bird Nest-like VO2/MXene Heterojunction for Ultrahigh-Rate Aqueous Zinc-Ion Batteries.” Journal of Power Sources 520 (February): 230872. 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...........3a2566094687eed2aa8c6a7ddb792d73&authtype=sso&custid=ns315887.