1 |
S-doped 3D porous carbons derived from potassium thioacetate activation strategy for zinc-ion hybrid supercapacitor applications Wang DW, Wang SY, Lu ZM International Journal of Energy Research, 45(2), 2498, 2021 |
2 |
Modeling and comparative analysis of a lithium-ion hybrid capacitor under different temperature conditions Li XY, Huang ZJ, Tian Y, Tian JD International Journal of Energy Research, 44(5), 3801, 2020 |
3 |
Effects of nano-SiO2 doped PbO2 as the positive electrode on the performance of lead-carbon hybrid capacitor Bao JP, Lin N, Guo JX, Gao WQ, Liu ZQ, Lin HB Journal of Colloid and Interface Science, 574, 377, 2020 |
4 |
Constructing surface-driven lithium ion storage structure for high performance hybrid capacitor Li HX, Chen JT, Yang BJ, Wang KJ, Zhang X, Zhang TY, Zhang L, Liu WS, Yan XB Electrochimica Acta, 299, 163, 2019 |
5 |
Smartly tailored Co(OH)(2)-Ni(OH)(2) heterostucture on nickel foam as binder-free electrode for high-energy hybrid capacitors Wang Y, Yin ZL, Li XH, Guo HJ, Zhang DC, Wang ZX Electrochimica Acta, 309, 140, 2019 |
6 |
Selenocyanate-based ionic liquid as redox-active electrolyte for hybrid electrochemical capacitors Fic K, Gorska B, Bujewska P, Beguin F, Frackowiak E Electrochimica Acta, 314, 1, 2019 |
7 |
Investigation of hybrid-capacitor properties of ruthenium complexes Altin S, Oz E, Altundag S, Bayri A, Roisnel T, Dorcet V, Bruneau C, Ozdemir I, Yasar S International Journal of Energy Research, 43(13), 6840, 2019 |
8 |
Sodium metal hybrid capacitors based on nanostructured carbon materials Kwak HW, Lee ME, Jin HJ, Yun YS Journal of Power Sources, 418, 218, 2019 |
9 |
High-energy hybrid electrochemical capacitor operating down to-40 degrees C with aqueous redox electrolyte based on choline salts Przygocki P, Abbas Q, Gorska B, Beguin F Journal of Power Sources, 427, 283, 2019 |
10 |
All-Fibrous Pyroprotein-Based Monolithic Electrodes Containing Heteroatoms for Sodium-Ion Hybrid Capacitors Lee ME, Kwak HW, Kim HY, Jin HJ Macromolecular Research, 27(5), 497, 2019 |