LaPr3Ni3O9.76 as a candidate solid oxide fuel cell cathode: Role of microstructure and interface structure on electrochemical performance
APL Materials AIP Publishing 7:1 (2019) 013204
La2Pr2Ni3O10±δ Ruddlesden-Popper phase as potential intermediate temperature-solid oxide fuel cell cathodes
Solid State Ionics Elsevier 320 (2018) 148-151
Dysprosium Acetylacetonato Single-Molecule Magnet Encapsulated in Carbon Nanotubes.
Materials (Basel, Switzerland) 10:1 (2016) E7
Abstract:
Dy single-molecule magnets (SMMs), which have several potential uses in a variety of applications, such as quantum computing, were encapsulated in multi-walled carbon nanotubes (MWCNTs) by using a capillary method. Encapsulation was confirmed by using transmission electron microscopy (TEM). In alternating current magnetic measurements, the magnetic susceptibilities of the Dy acetylacetonato complexes showed clear frequency dependence even inside the MWCNTs, meaning that this hybrid can be used as magnetic materials in devices.1D Chains of Lanthanoid Ions and a Dithienylethene Ligand Showing Slow Relaxation of the Magnetization
Magnetochemistry MDPI 2:2 (2016) 21