1 |
Characteristics of Li2CO3 as sintering aid for Ce0.8Sm0.2O2 electrolyte in solid oxide fuel cells Park GS, Mo SI, Kim JH, Yun JW Inpress KJChE, 1000(1000), 1, 2022 |
2 |
Fabrication of anode-supported thin BCZY electrolyte protonic fuel cells using NiO sintering aid Lee KR, Tseng CJ, Jang SC, Lin JC, Wang KW, Chang JK, Chen TC, Lee SW International Journal of Hydrogen Energy, 44(42), 23784, 2019 |
3 |
Bismuth tungstate/neodymium-doped ceria composite electrolyte for intermediate-temperature solid oxide fuel cell: Sintering aid and composite effect Wang JQ, Chen X, Xie SK, Chen L, Wang Y, Meng J, Zhou DF Journal of Power Sources, 428, 105, 2019 |
4 |
Ultralow temperature cofired BiZn2VO6 dielectric ceramics doped with B2O3 and Li2CO3 for ULTCC applications Xiang HC, Bai Y, Varghese J, Li CC, Fang L, Jantunen H Journal of the American Ceramic Society, 102(3), 1218, 2019 |
5 |
Effects of TiO2 doping on Li+-stabilized Na-beta ''-alumina for energy storage applications Dirksen CL, Skadell K, Schulz M, Stelter M Separation and Purification Technology, 213, 88, 2019 |
6 |
Enhancing sinterability and electrochemical properties of Ba(Zr0.1Ce0.7Y0.2)O3-delta proton conducting electrolyte for solid oxide fuel cells by addition of NiO Liu ZJ, Wang XQ, Liu ML, Liu J International Journal of Hydrogen Energy, 43(29), 13501, 2018 |
7 |
Effects of Y2O3 additive percentage on MgO ceramic by Co-Precipitation and SPS methods Seyedrazi SSH, Taheri-Nassaj E Materials Chemistry and Physics, 219, 96, 2018 |
8 |
K3Sb4O10(BO3): A solid state K-ion conductor Doux JM, Leguay L, La Salle AL, Joubert O, Quarez E Solid State Ionics, 324, 260, 2018 |
9 |
Tape casting and sintering of Li7La3Zr1.75Nb0.25Al0.1O12 with Li3BO3 additions Jonson RA, McGinn PJ Solid State Ionics, 323, 49, 2018 |
10 |
Er0.4Bi1.6O3-delta - La0.8Sr0.2MnO3-delta nano-composite as a low-temperature firing cathode of solid oxide fuel cell Kim SJ, Dayaghi AM, Kim KJ, Choi GM Journal of Power Sources, 344, 218, 2017 |