Search Results - "Kulish, M.R."

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  1. 1

    Photoconverter with luminescent concentrator. Matrix material by Kulish, M.R.

    “…Materials, promising for production of luminescent solar energy concentrators were considered. It is known that the silicon oxide matrix is transparent within…”
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    Journal Article
  2. 2

    Influence of the quantum dots bandgap and their dispersion on the loss of luminescent quanta by Kulish, M.R., Kostylyov, V.P., Sachenko, A.V., Sokolovskyi, I.O., Shkrebtii, A.I.

    “…The method for estimating the loss of luminescent quanta caused by reabsorption has been proposed. The method is based on the analysis of absorption and…”
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    Journal Article
  3. 3

    Luminescent converter of solar light into electrical energy. Review by Kulish, M.R.

    “…We review a status of the research on conversion of solar energy into electricity by using the systems that split the solar spectrum with a set of luminescent…”
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    Journal Article
  4. 4

    Temperature effect on light polarization in uniaxial crystals by Kulish, M.R.

    “…It has been shown that changes in temperature of uniaxial single crystal are accompanied by changes in the polarization plane angular position and the light…”
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    Journal Article
  5. 5

    Optical space communication. Review by Kulish, M.R., Malysh, М.І.

    “…Features of information exchange between satellites and satellites with ground stations and in the opposite direction are considered. The influence of such…”
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    Journal Article
  6. 6

    Efficiency analysis of betavoltaic elements by Sachenko, A.V., Shkrebtii, A.I., Korkishko, R.M., Kostylyov, V.P., Kulish, M.R., Sokolovskyi, I.O.

    Published in Solid-state electronics (01-09-2015)
    “…•Developed betavoltaic formalism for the maximum attainable conversion efficiency.•Considered tritium and Pm-147 as beta sources, Si and SiC are the base…”
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    Journal Article
  7. 7

    Impact of semiconductor quantum dots bandgap on reabsorption in luminescent concentrator by Shkrebtii, A.I.

    “…We have investigated the influence of the average radius and its dispersion of the semiconductor quantum dots (QDs) used in luminescent solar concentrators…”
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    Journal Article
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