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PUBMED FOR HANDHELDS

Journal Abstract Search


295 related items for PubMed ID: 30253352

  • 1. Deep-red emitting zinc and aluminium co-doped copper indium sulfide quantum dots for luminescent solar concentrators.
    Zhu M, Li Y, Tian S, Xie Y, Zhao X, Gong X.
    J Colloid Interface Sci; 2019 Jan 15; 534():509-517. PubMed ID: 30253352
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  • 6. Environmentally friendly, highly efficient, and large stokes shift-emitting ZnSe:Mn2+/ZnS core/shell quantum dots for luminescent solar concentrators.
    Byambasuren N, Hong AR, Lee WY, Byun JY, Kang G, Ko H, Jang HS.
    Sci Rep; 2022 Oct 20; 12(1):17595. PubMed ID: 36266448
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  • 7. Luminescence and photoelectrochemical properties of size-selected aqueous copper-doped Ag-In-S quantum dots.
    Raevskaya A, Rozovik O, Novikova A, Selyshchev O, Stroyuk O, Dzhagan V, Goryacheva I, Gaponik N, Zahn DRT, Eychmüller A.
    RSC Adv; 2018 Feb 14; 8(14):7550-7557. PubMed ID: 35539102
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  • 10. Emission-tunable CuInS2/ZnS quantum dots: structure, optical properties, and application in white light-emitting diodes with high color rendering index.
    Chuang PH, Lin CC, Liu RS.
    ACS Appl Mater Interfaces; 2014 Sep 10; 6(17):15379-87. PubMed ID: 25111960
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  • 11. High-Performance, Large-Area, and Ecofriendly Luminescent Solar Concentrators Using Copper-Doped InP Quantum Dots.
    Sadeghi S, Bahmani Jalali H, Srivastava SB, Melikov R, Baylam I, Sennaroglu A, Nizamoglu S.
    iScience; 2020 Jul 24; 23(7):101272. PubMed ID: 32590328
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  • 12. Controlling surface defects of non-stoichiometric copper-indium-sulfide quantum dots.
    Park JC, Nam YS.
    J Colloid Interface Sci; 2015 Dec 15; 460():173-80. PubMed ID: 26319334
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  • 13. Thick-Shell CuInS2/ZnS Quantum Dots with Suppressed "Blinking" and Narrow Single-Particle Emission Line Widths.
    Zang H, Li H, Makarov NS, Velizhanin KA, Wu K, Park YS, Klimov VI.
    Nano Lett; 2017 Mar 08; 17(3):1787-1795. PubMed ID: 28169547
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  • 14. Harnessing the properties of colloidal quantum dots in luminescent solar concentrators.
    Zhou Y, Zhao H, Ma D, Rosei F.
    Chem Soc Rev; 2018 Jul 30; 47(15):5866-5890. PubMed ID: 29915833
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  • 15. Structure/Property Relations in "Giant" Semiconductor Nanocrystals: Opportunities in Photonics and Electronics.
    Navarro-Pardo F, Zhao H, Wang ZM, Rosei F.
    Acc Chem Res; 2018 Mar 20; 51(3):609-618. PubMed ID: 29260851
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  • 16. Highly efficient and stable tandem luminescent solar concentrators based on carbon dots and CuInSe2-xSx/ZnS quantum dots.
    Wang L, Chen Y, Lai Y, Zhao X, Zheng K, Wang R, Zhou Y.
    Nanoscale; 2023 Dec 21; 16(1):188-194. PubMed ID: 38018877
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  • 17. Nearly suppressed photoluminescence blinking of small-sized, blue-green-orange-red emitting single CdSe-based core/gradient alloy shell/shell quantum dots: correlation between truncation time and photoluminescence quantum yield.
    Roy D, Mandal S, De CK, Kumar K, Mandal PK.
    Phys Chem Chem Phys; 2018 Apr 18; 20(15):10332-10344. PubMed ID: 29610808
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  • 18. Quantum-Cutting Luminescent Solar Concentrators Using Ytterbium-Doped Perovskite Nanocrystals.
    Luo X, Ding T, Liu X, Liu Y, Wu K.
    Nano Lett; 2019 Jan 09; 19(1):338-341. PubMed ID: 30525678
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  • 19. Near-Unity Emitting Copper-Doped Colloidal Semiconductor Quantum Wells for Luminescent Solar Concentrators.
    Sharma M, Gungor K, Yeltik A, Olutas M, Guzelturk B, Kelestemur Y, Erdem T, Delikanli S, McBride JR, Demir HV.
    Adv Mater; 2017 Aug 09; 29(30):. PubMed ID: 28605062
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  • 20. Highly luminescent CdSe/Cd(x)Zn(1-x)S quantum dots coated with thickness-controlled SiO2 shell through silanization.
    Yang P, Ando M, Murase N.
    Langmuir; 2011 Aug 02; 27(15):9535-40. PubMed ID: 21732647
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