Issue |
Section |
Title |
File |
Vol 52, No 1 (2016) |
Direct Conversion of Solar Energy to Electric Energy |
Direct solar conversion to electricity nanoscale effects in pSi–n(Si2)1–x(ZnSe)x (0 ≤ x ≤ 0.01) of solar cells |
|
Vol 52, No 2 (2016) |
Heliotechnical Materials Science |
The thermoelectric effect in a graded-gap nSi–pSi1–xGex heterostructure |
|
Vol 52, No 3 (2016) |
Materials Science of Solar Engineering |
Expansion of the spectral sensitivity range of the silicon photocells by growing a solid (Si2)1–x(GaP)x (0 ≤ x ≤ 1) solution |
|
Vol 53, No 1 (2017) |
Direct Conversion of Solar Energy to Electricity |
Thermoelectric effect in the graded band gap Si1–xGex (0.2 ≤ x ≤ 1), Si1–xGex (0.5 ≤ x ≤ 1) solid solutions dependent on the gap difference |
|
Vol 53, No 4 (2017) |
Direct Solar Energy Conversion into Electrical Energy |
Photosensitivity of pSi-n(Si2)1–x–y(Ge2)x(ZnSe)y heterostructures with quantum dots |
|
Vol 54, No 5 (2018) |
Solar Engineering Materials Science |
Spectral Photosensitivity and Temperature-Independent Volt–Ampere Characteristic of pSi–n(ZnSe)1 –x–y(Si2)x(GaP)y Structures |
|
Vol 55, No 1 (2019) |
Direct Conversion of Solar Energy Into Electrical Energy |
Photothermovoltaic Effect in a SixGe1–x Variband Solid Solution |
|
Vol 55, No 5 (2019) |
Direct Conversion of Solar Energy Into Electrical Energy |
Photothermovoltaic Effect in p-Si−n-(Si2)1 –x–y(Ge2)x(ZnSe)y Structure |
|
Vol 55, No 5 (2019) |
Solar-Energy Materials Science |
Synthesis, Structure and Electro-Physical Properties n-GaAs–p-(GaAs)1 –x–y(Ge2)x(ZnSe)y Heterostructures (Review) |
|