1 |
Direct evidence of band-bending at grain boundaries of ZnO:SnO2 films: Local probe microscopic studies Singh R, Som T Solar Energy, 208, 275, 2020 |
2 |
Simulation of Conductive Atomic Force Microscopy of Organic Photovoltaics by Dynamic Monte Carlo Method Kawashima E, Fujii M, Yamashita K Chemistry Letters, 48(6), 513, 2019 |
3 |
Superdomain structure and high conductivity at the vertices in the (111)-oriented epitaxial tetragonal Pb(Zr,Ti)O-3 thin film Yang SM, Shin YJ, Ehara Y, Funakubo H, Yoon JG, Scott JF, Noh TW Current Applied Physics, 19(4), 418, 2019 |
4 |
Phase formation and local charge transport of lead-free CH3NH3Sn(I1-xBrx)(3) (0 <= x <= 1) perovskite solar cells fabricated by solvent optimization Nguyen BP, Shin D, Jung HR, Kim J, Nguyen TTT, Yoon S, Yi Y, Jo W Solar Energy, 186, 136, 2019 |
5 |
Revealing multimode resistive switching in Cu-O nanostructures using conductive atomic force microscopy Kumar M, Satpati B, Som T Applied Surface Science, 454, 82, 2018 |
6 |
Grain-boundary effect and post treatment of active layer for efficient inverted planar perovskite solar cells Yang CP, Wang JY, Bao XC, Gao J, Liu ZW, Yang RQ Electrochimica Acta, 281, 9, 2018 |
7 |
Nano-Newton force based pseudoferroelectric AI-doped ZnO/Si switchable diode Kumar M, Som T Applied Surface Science, 418, 369, 2017 |
8 |
Electrical characterization of FIB processed metal layers for reliable conductive-AFM on ZnO microstructures Pea M, Maiolo L, Giovine E, Rinaldi A, Araneo R, Notargiacomo A Applied Surface Science, 371, 83, 2016 |
9 |
Influence of the polytetrafluoroethylene content on the performance of high-temperature polymer electrolyte membrane fuel cell electrodes Mack F, Morawietz T, Hiesgen R, Kramer D, Gogel V, Zeis R International Journal of Hydrogen Energy, 41(18), 7475, 2016 |
10 |
High resolution characterization of grain boundaries in Cu2ZnSnSe4 solar cells synthesized by nanoparticle selenization Xu MJ, Liu B, Graham G, Pan XQ Solar Energy Materials and Solar Cells, 157, 171, 2016 |