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Journal Abstract Search


147 related items for PubMed ID: 32937605

  • 1. Polytypism in GaAs/GaNAs core-shell nanowires.
    Yukimune M, Fujiwara R, Mita T, Ishikawa F.
    Nanotechnology; 2020 Dec 11; 31(50):505608. PubMed ID: 32937605
    [Abstract] [Full Text] [Related]

  • 2. Self-catalyzed MBE grown GaAs/GaAs(x)Sb(1-x) core-shell nanowires in ZB and WZ crystal structures.
    Ghalamestani SG, Munshi AM, Dheeraj DL, Fimland BO, Weman H, Dick KA.
    Nanotechnology; 2013 Oct 11; 24(40):405601. PubMed ID: 24028926
    [Abstract] [Full Text] [Related]

  • 3. Phase Transformation in Radially Merged Wurtzite GaAs Nanowires.
    Jacobsson D, Yang F, Hillerich K, Lenrick F, Lehmann S, Kriegner D, Stangl J, Wallenberg LR, Dick KA, Johansson J.
    Cryst Growth Des; 2015 Oct 07; 15(10):4795-4803. PubMed ID: 26494983
    [Abstract] [Full Text] [Related]

  • 4. Crystal phase engineering of self-catalyzed GaAs nanowires using a RHEED diagram.
    Dursap T, Vettori M, Danescu A, Botella C, Regreny P, Patriarche G, Gendry M, Penuelas J.
    Nanoscale Adv; 2020 May 19; 2(5):2127-2134. PubMed ID: 36132505
    [Abstract] [Full Text] [Related]

  • 5. Efficient methodology to correlate structural with optical properties of GaAs nanowires based on scanning electron microscopy.
    Lin WH, Jahn U, Küpers H, Luna E, Lewis RB, Geelhaar L, Brandt O.
    Nanotechnology; 2017 Oct 13; 28(41):415703. PubMed ID: 28767046
    [Abstract] [Full Text] [Related]

  • 6. Hole and Electron Effective Masses in Single InP Nanowires with a Wurtzite-Zincblende Homojunction.
    Tedeschi D, Fonseka HA, Blundo E, Granados Del Águila A, Guo Y, Tan HH, Christianen PCM, Jagadish C, Polimeni A, De Luca M.
    ACS Nano; 2020 Sep 22; 14(9):11613-11622. PubMed ID: 32865391
    [Abstract] [Full Text] [Related]

  • 7. A story told by a single nanowire: optical properties of wurtzite GaAs.
    Ahtapodov L, Todorovic J, Olk P, Mjåland T, Slåttnes P, Dheeraj DL, van Helvoort AT, Fimland BO, Weman H.
    Nano Lett; 2012 Dec 12; 12(12):6090-5. PubMed ID: 23131181
    [Abstract] [Full Text] [Related]

  • 8. Crystal-Structure-Dependent Piezotronic and Piezo-Phototronic Effects of ZnO/ZnS Core/Shell Nanowires for Enhanced Electrical Transport and Photosensing Performance.
    Jeong S, Kim MW, Jo YR, Kim TY, Leem YC, Kim SW, Kim BJ, Park SJ.
    ACS Appl Mater Interfaces; 2018 Aug 29; 10(34):28736-28744. PubMed ID: 30070111
    [Abstract] [Full Text] [Related]

  • 9. Real-time thermal decomposition kinetics of GaAs nanowires and their crystal polytypes on the atomic scale.
    Schmiedeke P, Panciera F, Harmand JC, Travers L, Koblmüller G.
    Nanoscale Adv; 2023 May 30; 5(11):2994-3004. PubMed ID: 37260482
    [Abstract] [Full Text] [Related]

  • 10. Fluctuating potentials in GaAs:Si nanowires: critical reduction of the influence of polytypism on the electronic structure.
    Ben Sedrine N, Ribeiro-Andrade R, Gustafsson A, Soares MR, Bourgard J, Teixeira JP, Salomé PMP, Correia MR, Moreira MVB, De Oliveira AG, González JC, Leitão JP.
    Nanoscale; 2018 Feb 22; 10(8):3697-3708. PubMed ID: 29388656
    [Abstract] [Full Text] [Related]

  • 11. Addressing the Fundamental Electronic Properties of Wurtzite GaAs Nanowires by High-Field Magneto-Photoluminescence Spectroscopy.
    De Luca M, Rubini S, Felici M, Meaney A, Christianen PCM, Martelli F, Polimeni A.
    Nano Lett; 2017 Nov 08; 17(11):6540-6547. PubMed ID: 29035544
    [Abstract] [Full Text] [Related]

  • 12. Strongly polarized quantum-dot-like light emitters embedded in GaAs/GaNAs core/shell nanowires.
    Filippov S, Jansson M, Stehr JE, Palisaitis J, Persson PO, Ishikawa F, Chen WM, Buyanova IA.
    Nanoscale; 2016 Sep 21; 8(35):15939-47. PubMed ID: 27537077
    [Abstract] [Full Text] [Related]

  • 13. Wurtzite phase control for self-assisted GaAs nanowires grown by molecular beam epitaxy.
    Dursap T, Vettori M, Botella C, Regreny P, Blanchard N, Gendry M, Chauvin N, Bugnet M, Danescu A, Penuelas J.
    Nanotechnology; 2021 Apr 09; 32(15):155602. PubMed ID: 33429384
    [Abstract] [Full Text] [Related]

  • 14. Effects of thermal annealing on localization and strain in core/multishell GaAs/GaNAs/GaAs nanowires.
    Balagula RM, Jansson M, Yukimune M, Stehr JE, Ishikawa F, Chen WM, Buyanova IA.
    Sci Rep; 2020 May 19; 10(1):8216. PubMed ID: 32427905
    [Abstract] [Full Text] [Related]

  • 15. Crystal Structure Induced Preferential Surface Alloying of Sb on Wurtzite/Zinc Blende GaAs Nanowires.
    Hjort M, Kratzer P, Lehmann S, Patel SJ, Dick KA, Palmstrøm CJ, Timm R, Mikkelsen A.
    Nano Lett; 2017 Jun 14; 17(6):3634-3640. PubMed ID: 28537733
    [Abstract] [Full Text] [Related]

  • 16. Polytypism in GaAs nanowires: determination of the interplanar spacing of wurtzite GaAs by X-ray diffraction.
    Köhl M, Schroth P, Minkevich AA, Hornung JW, Dimakis E, Somaschini C, Geelhaar L, Aschenbrenner T, Lazarev S, Grigoriev D, Pietsch U, Baumbach T.
    J Synchrotron Radiat; 2015 Jan 14; 22(1):67-75. PubMed ID: 25537590
    [Abstract] [Full Text] [Related]

  • 17. Enhanced thermoelectric figure of merit in thin GaAs nanowires.
    Zou X, Chen X, Huang H, Xu Y, Duan W.
    Nanoscale; 2015 May 21; 7(19):8776-81. PubMed ID: 25905892
    [Abstract] [Full Text] [Related]

  • 18. Crystal Phase Quantum Dots in the Ultrathin Core of GaAs-AlGaAs Core-Shell Nanowires.
    Loitsch B, Winnerl J, Grimaldi G, Wierzbowski J, Rudolph D, Morkötter S, Döblinger M, Abstreiter G, Koblmüller G, Finley JJ.
    Nano Lett; 2015 Nov 11; 15(11):7544-51. PubMed ID: 26455732
    [Abstract] [Full Text] [Related]

  • 19. Kinetic Engineering of Wurtzite and Zinc-Blende AlSb Shells on InAs Nanowires.
    Kindlund H, Zamani RR, Persson AR, Lehmann S, Wallenberg LR, Dick KA.
    Nano Lett; 2018 Sep 12; 18(9):5775-5781. PubMed ID: 30133288
    [Abstract] [Full Text] [Related]

  • 20. Growth and characterization of wurtzite GaAs nanowires with defect-free zinc blende GaAsSb inserts.
    Dheeraj DL, Patriarche G, Zhou H, Hoang TB, Moses AF, Grønsberg S, van Helvoort AT, Fimland BO, Weman H.
    Nano Lett; 2008 Dec 12; 8(12):4459-63. PubMed ID: 19367852
    [Abstract] [Full Text] [Related]


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