1 |
Real time magnetic supercapacitor with antiferromagnetic nickel hydroxide based nanocomposite Viswanathan A, Shetty AN Electrochimica Acta, 309, 187, 2019 |
2 |
An integrated, flexible aqueous Zn-ion battery with high energy and power densities Liu PF, Lv RH, He Y, Na B, Wang B, Liu HS Journal of Power Sources, 410, 137, 2019 |
3 |
Graphene boosted pseudocapacitive lithium storage: A case of G-Fe2O3 Wang CZ, Zhao YJ, Zhai XM, Ding CH, Zhao XC, Li JB, Jin HB Electrochimica Acta, 282, 955, 2018 |
4 |
Influence of porosity parameters and electrolyte chemical composition on the power densities of non-aqueous and ionic liquid based supercapacitors Harmas R, Palm R, Harmas M, Pohl M, Kurig H, Tallo I, Tee E, Vaas I, Vali R, Romann T, Oll O, Kanarbik R, Liivand K, Eskusson J, Kruusma J, Thomberg T, Janes A, Miidla P, Lust E Electrochimica Acta, 283, 931, 2018 |
5 |
Punched H2Ti12O25 anode and activated carbon cathode for high energy/high power hybrid supercapacitors Lee SH, Kim JM Energy, 150, 816, 2018 |
6 |
Suitability of representative electrochemical energy storage technologies for ramp-rate control of photovoltaic power Jiang Y, Fletcher J, Burr P, Hall C, Zheng BW, Wang DW, Ouyang Z, Lennon A Journal of Power Sources, 384, 396, 2018 |
7 |
Recently emerging trends in thermal conductivity of polymer nanocomposites Idumah CI, Hassan A Reviews in Chemical Engineering, 32(4), 413, 2016 |
8 |
Effects of pressurization and temperature on power generating characteristics and impedances of anode-supported and electrolyte-supported planar solid oxide fuel cells Hsieh YD, Chan YH, Shy SS Journal of Power Sources, 299, 1, 2015 |
9 |
High-power-density catalyst induced hydrino transition (CIHT) electrochemical cell Mills R, Lotoski J, Kong J, Chu G, He J, Trevey J International Journal of Hydrogen Energy, 39(27), 14512, 2014 |
10 |
High DMFC performance output using modified acid-base polymer blend Pasupathi S, Ji S, Bladergroen BJ, Linkov V International Journal of Hydrogen Energy, 33(12), 3132, 2008 |