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View article: Synergistic Effect of Mesoporous Carbon‐Based Framework with Sodiophilic Nanoparticles for Stable Sodium Metal Anodes
Synergistic Effect of Mesoporous Carbon‐Based Framework with Sodiophilic Nanoparticles for Stable Sodium Metal Anodes Open
Sodium metal anodes (SMAs), featuring high theoretical specific capacity and low redox potential, offer a feasible approach toward next‐generation high‐dense energy storage technology. However, the growth of Na dendrite and the sluggish ki…
View article: Root‐Growth‐Inspired Self‐Morphology‐Evolution of Microsized Bismuth Surrounded by Microsized Hard Carbon for Stabilized Sodium‐Ion Storage
Root‐Growth‐Inspired Self‐Morphology‐Evolution of Microsized Bismuth Surrounded by Microsized Hard Carbon for Stabilized Sodium‐Ion Storage Open
Alloy‐type materials are desirable for high‐energy sodium‐ion batteries. Different from nanoengineering with pre‐reserving void space and confined carbon coatings, microsized particles promise high specific/volumetric capacities, easy manu…
View article: Cover Image, Volume 4, Number 2, March 2022
Cover Image, Volume 4, Number 2, March 2022 Open
Front cover image: Relieving the stress or strain associated with volume change is highly desirable for high-performance SiOx anodes in terms of stable solid electrolyte interphase (SEI)-film growth. In article number 10.1002/cey2.141, Tao…
View article: Boosting the cell performance of the SiO<sub><i>x</i></sub>@C anode material via rational design of a Si‐valence gradient
Boosting the cell performance of the SiO<sub><i>x</i></sub>@C anode material via rational design of a Si‐valence gradient Open
Relieving the stress or strain associated with volume change is highly desirable for high‐performance SiO x anodes in terms of stable solid electrolyte interphase (SEI)‐film growth. Herein, a Si‐valence gradient is optimized in SiO x compo…