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Electrochemical Growth and Structural Study of the AlxGa1−xAs Nanowhisker Layer on the GaAs Surface

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dc.contributor.author Suchikova, Yana
dc.contributor.author Kovachov, Sergii
dc.contributor.author Bohdanov, Ihor
dc.contributor.author Abdikadirova, Anar A.
dc.contributor.author Kenzhina, Inesh
dc.contributor.author Popov, Anatoli I.
dc.date.accessioned 2024-12-10T06:53:36Z
dc.date.available 2024-12-10T06:53:36Z
dc.date.issued 2023
dc.identifier.citation Suchikova, Y.; Kovachov, S.; Bohdanov, I.; Abdikadirova, A.A.; Kenzhina, I.; Popov, A.I. Electrochemical Growth and Structural Study of the AlxGa1−xAs Nanowhisker Layer on the GaAs Surface. J. Manuf. Mater. Process. 2023, 7, 153. https://doi.org/10.3390/ jmmp7050153 ru
dc.identifier.issn 2504-4494
dc.identifier.other doi.org/10.3390/ jmmp7050153
dc.identifier.uri http://rep.enu.kz/handle/enu/20013
dc.description.abstract This work presents a novel, cost-effective method for synthesizing AlxGa1−xAs nanowhiskers on a GaAs surface by electrochemical deposition. The process begins with structuring the GaAs surface by electrochemical etching, forming a branched nanowhisker system. Despite the close resemblance of the crystal lattices of AlAs, GaAs, and AlxGa1−xAs, our study highlights the formation of nanowhiskers instead of layer-by-layer film growth. X-ray diffraction analysis and photoluminescence spectrum evaluations confirm the synthesized structure’s crystallinity, uniformity, and bandgap characteristics. The unique morphology of the nanowhiskers offers promising implications for solar cell applications because of the increased light absorption potential and reduced surface recombination energy losses. We conclude by emphasizing the need for further studies on the growth mechanisms of AlxGa1−xAs nanowhiskers, adjustments of the “x” parameter during electrochemical deposition, and detailed light absorption properties of the formed compounds. This research contributes to the field of wideband materials, particularly for solar energy applications, highlighting the potential of electrochemical deposition as a flexible and economical fabrication method. ru
dc.language.iso en ru
dc.publisher Journal of Manufacturing and Materials Processing ru
dc.relation.ispartofseries Volume 7 Issue 5;
dc.subject nanowhiskers ru
dc.subject electrochemical deposition ru
dc.subject electrochemical etching ru
dc.subject crystal lattice ru
dc.subject layer-by-layer growth ru
dc.subject X-ray diffraction analysis ru
dc.subject photoluminescence spectrum ru
dc.subject crystallinity ru
dc.title Electrochemical Growth and Structural Study of the AlxGa1−xAs Nanowhisker Layer on the GaAs Surface ru
dc.type Article ru


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