Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Nidhal M. Abdul-Ameer"'
Publikováno v:
Materials Research Express, Vol 9, Iss 1, p 015007 (2022)
Vanadium dioxide nanofilms are one of the most essential materials in electronic applications like smart windows. Therefore, studying and understanding the optical properties of such films is crucial to modify the parameters that control these proper
Externí odkaz:
https://doaj.org/article/f93c0525d4154b688151706cd100e374
Publikováno v:
Materials Science Forum. 1050:65-77
Bruggeman's symmetric effective-medium model of vanadium oxide is introduced, in which the transmittance was studied because of its importance in the subject of smart windows, it was studied from ( 5 nm-1000 nm) for each of the regions of the electro
Autor:
Nidhal M. Abdul-Ameer, Roaa Sh. Hammad
Publikováno v:
Key Engineering Materials. 900:121-130
CdSe quantum dots possess a tuning energy gap which can control gap values according to the size of the quantum dots, this is made the material able to absorb the wavelengths within visible light. A simple model is provided for the absorption coeffic
Publikováno v:
Key Engineering Materials. 886:108-116
A significant influence of temperature width found on the vanadium oxide properties, it plays a major role in highlighting the thermal limits of the three phases (metallic, semiconductor, and dielectric). Two values of the temperature width , and , h
Publikováno v:
Journal of Physics: Conference Series. 1879:032078
Because of Cadmium selenide quantum dots (CdSe quantum dots) has a tuning energy gap in the visible light range, therefore; it is provided a simple theoretical model for the absorption coefficient of CdSe quantum dots, where the absorption coefficien
Publikováno v:
Journal of Modern Physics. :1530-1537
A theoretical investigation of photoluminescence spectra for amorphous silicon quantum-dots (1 - 4 nm), at room temperature, were used to study the effect of both spatial and quantum confinements spontaneously via determination the energy peak of max
Publikováno v:
Journal of Physics: Conference Series. 1003:012105
A theoretical model for radiative recombination in amorphous silicon quantum dots (a-SiQDs) was developed. In this model, for the first time, the coexistence of both spatial and quantum confinements were considered. Also, it is found that the photolu