1 |
Manifestation of T-exciton migration in the kinetics of singlet fission in organic semiconductors Shushin AI Chemical Physics Letters, 678, 283, 2017 |
2 |
Photoelectrochemical and magnetic studies on photoactive interface thin film assemblies of poly bithiophene/poly 3-(2-thienyl) aniline/ferromagnetic Mg-doped Fe2O3 in aqueous electrolytes Kasem KK, Elmasry M, Baker K, Santucci C Thin Solid Films, 634, 56, 2017 |
3 |
Broad-Spectral-Response Nanocarbon Bulk-Heterojunction Excitonic Photodetectors Xie Y, Gong MG, Shastry TA, Lohrman J, Hersam MC, Ren SQ Advanced Materials, 25(25), 3433, 2013 |
4 |
Nonlinear viscoelasticity and two-step yielding in magnetorheology: A colloidal gel approach to understand the effect of particle concentration Segovia-Gutierrez JP, Berli CLA, de Vicente J Journal of Rheology, 56(6), 1429, 2012 |
5 |
A study of external magnetic-field effects on nickel-iron alloy electrodeposition, based on linear and non-linear differential AC electrochemical response measurements Ispas A, Matsushima H, Bund A, Bozzini B Journal of Electroanalytical Chemistry, 651(2), 197, 2011 |
6 |
Effects of a magnetic field on growth of porous alumina films on aluminum Ispas A, Bund A, Vrublevsky I Electrochimica Acta, 55(13), 4180, 2010 |
7 |
Magnetic field effects on selective catalytic reduction of NO by NH3 over Fe2O3 catalyst in a magnetically fluidized bed Yao GH, Wang F, Wang XB, Gui KT Energy, 35(5), 2295, 2010 |
8 |
Electrocodeposition of magnetic nickel matrix nanocomposites in a static magnetic field Thiemig D, Kubeil C, Graf CP, Bund A Thin Solid Films, 517(5), 1636, 2009 |
9 |
Influence of a magnetic field on the electrodeposition of nickel-iron alloys Ispas A, Matsushima H, Plieth W, Bund A Electrochimica Acta, 52(8), 2785, 2007 |
10 |
Influence of a static magnetic field on nickel electrodeposition studied using an electrochemical quartz crystal microbalance, atomic force microscopy and vibrating sample magnetometry Bund A, Ispas A Journal of Electroanalytical Chemistry, 575(2), 221, 2005 |