Lead iodide PbI2 is an excellent and interesting candidate for high efficiency room temperature detectors working in the medium energy range of 1 keV-1 MeV. It can be widely applied in medicine, monitoring ecology, nondestructive defectoscopy and X-ray and gamma spectroscopy. The peculiarities of this material are high resistivity, ability to work in a wide range of temperatures and high chemical stability. The method of preparation was direct synthesis from lead and iodine. The material was further purified by zone melting and grown by Bridgman-Stockbarger method. In this work we have concentrated on the study of the influence of dopants such as lanthanides (Er,Gd, Ho, Tb, Tm, Yb, GdI3, HoI3, GdI3) and elements of other groups, such as Au,...
The ability of Mercuric Iodide (HgI2) to function as a highly efficient radiation detector at room t...
Lead iodide thin films were fabricated using the spray pyrolysis technique. Milli-Q water and N.N-di...
The bandgap energy as a function of temperature has been determined for lead iodide. The monocrystal...
Lead iodide (PbI2) shows excellent electronic properties for detection of ionizing radiation. We rep...
In this study, we report on the results of the investigation of lead iodide material properties. The...
Lead iodide starting materials have been purified by a multipass zone refining process. The effectiv...
Lead iodide is an important inorganic solid for fundamental research and possible technological appl...
p. 7219-7224The electronic properties and the optical absorption of lead iodide (PbI2) have been inv...
In this work we present the structural properties and stoichiometry analysis of thin films of lead i...
AbstractSome semiconductor materials such as lead iodide (PbI2) have applications in the detection o...
Two-dimensional (2D) semiconducting materials are particularly appealing for many applications. Alth...
Impedance spectroscopic measurements on spin coated 550 nm thick perovskite films sandwiched betw...
Thermally stimulated current measurements have been performed on polycrystalline layers of lead iod...
The development of two-dimensional nanomaterials has expedited the growth of advanced technological ...
This thesis presents the results of an investigation into the hole mobility and its temperature depe...
The ability of Mercuric Iodide (HgI2) to function as a highly efficient radiation detector at room t...
Lead iodide thin films were fabricated using the spray pyrolysis technique. Milli-Q water and N.N-di...
The bandgap energy as a function of temperature has been determined for lead iodide. The monocrystal...
Lead iodide (PbI2) shows excellent electronic properties for detection of ionizing radiation. We rep...
In this study, we report on the results of the investigation of lead iodide material properties. The...
Lead iodide starting materials have been purified by a multipass zone refining process. The effectiv...
Lead iodide is an important inorganic solid for fundamental research and possible technological appl...
p. 7219-7224The electronic properties and the optical absorption of lead iodide (PbI2) have been inv...
In this work we present the structural properties and stoichiometry analysis of thin films of lead i...
AbstractSome semiconductor materials such as lead iodide (PbI2) have applications in the detection o...
Two-dimensional (2D) semiconducting materials are particularly appealing for many applications. Alth...
Impedance spectroscopic measurements on spin coated 550 nm thick perovskite films sandwiched betw...
Thermally stimulated current measurements have been performed on polycrystalline layers of lead iod...
The development of two-dimensional nanomaterials has expedited the growth of advanced technological ...
This thesis presents the results of an investigation into the hole mobility and its temperature depe...
The ability of Mercuric Iodide (HgI2) to function as a highly efficient radiation detector at room t...
Lead iodide thin films were fabricated using the spray pyrolysis technique. Milli-Q water and N.N-di...
The bandgap energy as a function of temperature has been determined for lead iodide. The monocrystal...