1 |
A bioinspired three-dimensional nanofibrous Cu-nanoparticle/SnO2/carbon composite as an anodic material for lithium-ion battery Wang K, Huang JG Applied Surface Science, 476, 293, 2019 |
2 |
Influences of co-sputtered carbon on the electrochemical performance of SiO/C thin film anodes for lithium-ion batteries Cao ZL, Xia BJ, Xie XH, Zhao JB Electrochimica Acta, 313, 311, 2019 |
3 |
Effect of magnetron sputtered anode functional layer on the anode-supported solid oxide fuel cell performance Solovyev AA, Lebedynskiy AM, Shipilova AV, Ionov IV, Smolyanskiy EA, Lauk AL, Remnev GE International Journal of Hydrogen Energy, 44(58), 30636, 2019 |
4 |
Engineering self-standing Si-Mo-O based nanostructure arrays as anodes for new era lithium-ion batteries Karahan BD, Amine K Journal of Applied Electrochemistry, 49(7), 671, 2019 |
5 |
Silicon thin film on graphene coated nickel foam as an anode for Li-ion batteries Mukanova A, Nurpeissova A, Urazbayev A, Kim SS, Myronov M, Bakenov Z Electrochimica Acta, 258, 800, 2017 |
6 |
Use of Multilayered Ni-Sn and Ni-Sn-C Thin Film Anodes for Lithium-Ion Batteries Polat BD, Abouimrane A, Sezgin N, Keles O, Amine K Electrochimica Acta, 135, 585, 2014 |
7 |
Modeling the delamination of amorphous-silicon thin film anode for lithium-ion battery Pal S, Damle SS, Patel SH, Datta MK, Kumta PN, Maiti S Journal of Power Sources, 246, 149, 2014 |
8 |
Well-aligned, ordered, nanocolumnar, Cu-Si thin film as anode material for lithium-ion batteries Polat DB, Keles O, Amine K Journal of Power Sources, 270, 238, 2014 |
9 |
Temperature-dependent lithium storage behavior in tetragonal boron (B-50) thin film anode for Li-ion batteries Ding XL, Lu X, Fu Z, Li H Electrochimica Acta, 87, 230, 2013 |
10 |
Investigation of crack patterns and cyclic performance of Ti-Si nanocomposite thin film anodes for lithium ion batteries Wang YH, He Y, Xiao RJ, Li H, Aifantis KE, Huang XJ Journal of Power Sources, 202, 236, 2012 |