1 |
Effect of the excess protons on the electrotansport, structural and thermodynamic properties of CsH2PO4 Ponomareva VG, Lavrova GV Solid State Ionics, 304, 90, 2017 |
2 |
Intermediate-temperature composite proton electrolyte CsH5(PO4)(2)/SiO2: Transport properties versus oxide characteristic Lavrova GV, Ponomareva VG Solid State Ionics, 179(21-26), 1170, 2008 |
3 |
Bulk and surface properties of ionic salt CsH5(PO4)(2) Lavrova GV, Burgina EB, Matvienko AA, Ponomareva VG Solid State Ionics, 177(13-14), 1117, 2006 |
4 |
Intermediate-temperature fuel cell based on the proton-conducting composite membranes Lavrova GV, Russkih MV, Ponomareva VG, Uvarov NF Solid State Ionics, 177(19-25), 2129, 2006 |
5 |
Proton conductivity and structural dynamics in Cs5H3(SO4)(4)/SiO2 composites Lavrova GV, Ponomareva VG, Burgina EB Solid State Ionics, 176(7-8), 767, 2005 |
6 |
Unusual metastable ion-conducting states in ionic salt-oxide nanocomposites Uvarov NF, Ponomareva VG, Lavrova GV, Brezhneva LI Materials Science Forum, 386-3, 639, 2002 |
7 |
The investigation of disordered phases in nanocomposite proton electrolytes based on MeHSO4 (Me = Rb, Cs, K) Ponomareva VG, Lavrova GV Solid State Ionics, 145(1-4), 197, 2001 |
8 |
Effect of silica porous structure on the properties of composite electrolytes based on MeNO3 (Me = Rb, Cs) Ponomareva VG, Lavrova GV, Simonova LG Solid State Ionics, 136-137, 1279, 2000 |
9 |
Nanocomposite ionic conductors in the system MeNO3-SiO2 (Me = Rb, Cs) Lavrova GV, Ponomareva VG, Uvarov NF Solid State Ionics, 136-137, 1285, 2000 |
10 |
The influence of heterogeneous dopant porous structure on the properties of protonic solid electrolyte in the CsHSO4-SiO2 system Ponomareva VG, Lavrova GV, Simonova LG Solid State Ionics, 118(3-4), 317, 1999 |