ExLibris header image
SFX Logo
Title: Bridging the academic and industrial metrics for next-generation practical batteries
Source:

Nature Nanotechnology [1748-3387] Yuliang Cao, Matthew yr:2019


Collapse list of basic services Basic
Sorry, no full text available...
Please use the document delivery service (see below)  
Holding information
Holdings in library search engine ALBERT GO
Document delivery
Request document via Library/Bibliothek GO
Users interested in this article also expressed an interest in the following:
1. Jay, R. "Comparative Study of Mg(CB11H12)2and Mg(TFSI)2at the Magnesium/Electrolyte Interface." ACS Applied Materials and Interfaces 11.12 (2019): 11414-11420. Link to Full Text for this item Link to SFX for this item
2. Bin Li, B. "Kinetic surface control for improved magnesium-electrolyte interfaces for magnesium ion batteries." Energy Storage Materials 22 (2019): 96-104. Link to SFX for this item
3. Seguin, Trevor J. "Elucidating Non-aqueous Solvent Stability and Associated Decomposition Mechanisms for Mg Energy Storage Applications From First-Principles." Frontiers in Chemistry 7 (2019): 175-175. Link to Full Text for this item Link to SFX for this item
4. Li, Y. "Electrochemically-driven interphase conditioning of magnesium electrode for magnesium sulfur batteries." Journal of Energy Chemistry 37 (2019): 215-219. Link to SFX for this item
5. Du, A. "A Crosslinked Polytetrahydrofuran-Borate-Based Polymer Electrolyte Enabling Wide-Working-Temperature-Range Rechargeable Magnesium Batteries." Advanced Materials 31.11 (2019): 1805930-. Link to Full Text for this item Link to SFX for this item
6. Ta, K. "Elucidating Zn and Mg Electrodeposition Mechanisms in Nonaqueous Electrolytes for Next-Generation Metal Batteries." The Journal of Physical Chemistry C 122.25 (2018): 13790-13796. Link to Full Text for this item Link to SFX for this item
Select All Clear All

Expand list of advanced services Advanced