1 |
A critical review on progress of the electrode materials of vanadium redox flow battery Gencten M, Sahin Y International Journal of Energy Research, 44(10), 7903, 2020 |
2 |
Self-assembled MXene(Ti3C2Tx)/alpha-Fe2O3 nanocomposite as negative electrode material for supercapacitors Zou R, Quan HY, Pan MH, Zhou S, Chen DZ, Luo XB Electrochimica Acta, 292, 31, 2018 |
3 |
Electrochemical reactions of AgFeO2 as negative electrode in Li- and Na-ion batteries Berastegui P, Tai CW, Valvo M Journal of Power Sources, 401, 386, 2018 |
4 |
Failure mechanism of NaAlH4 negative electrodes in lithium cells Silvestri L, Navarra MA, Brutti S, Reale P Electrochimica Acta, 253, 218, 2017 |
5 |
Effect of Ni-nanoparticles decoration on graphene to enable high capacity sodium-ion battery negative electrodes Pramudita JC, Pontiroli D, Magnani G, Gaboardi M, Milanese C, Bertoni G, Sharma N, Ricco M Electrochimica Acta, 250, 212, 2017 |
6 |
Facile hydrothermal synthesis and characterization of Co2GeO4/r-GO@C ternary nanocomposite as negative electrode for Li-ion batteries Yuvaraj S, Karthikeyan K, Selvan RK Journal of Colloid and Interface Science, 498, 76, 2017 |
7 |
The Electrochemistry of Sputtered and Ball Milled C1-xBx (0 <= y <= 0.60) Alloys in Li and Na Cells Zhao XY, Sanderson RJ, Dunlap RA, Obrovac MN Electrochimica Acta, 209, 285, 2016 |
8 |
Solid electrolyte interphase formation in propylene carbonate-based electrolyte solutions for lithium-ion batteries based on the Lewis basicity of the co-solvent and counter anion Song HY, Fukutsuka T, Miyazaki K, Abe T Journal of Applied Electrochemistry, 46(11), 1099, 2016 |
9 |
The Reversible Magnesiation of Pb Periyapperuma K, Tran TT, Purcell MI, Obrovac MN Electrochimica Acta, 165, 162, 2015 |
10 |
Tailoring the potential window of negative electrodes: A diagnostic method for understanding parasitic oxidation reactions in cells with 5 V LiNi0.5Mn1.5O4 positive electrodes Levi MD, Dargel V, Shilina Y, Borgel V, Aurbach D, Halalay IC Journal of Power Sources, 278, 599, 2015 |