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      Controlled Growth of ZnSe Nanocrystals by Tuning Reactivity and Amount of Zinc Precursor

      , , , , ,
      Journal of Chemistry
      Hindawi Limited

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          Abstract

          Zinc selenide (ZnSe) nanocrystals were synthesized via a phosphine-free route using the highly reactive alkylamine-H 2Se complex as selenium precursor and zinc precursors with different reactivity. The reactivity of zinc precursor was tuned by using three kinds of zinc carboxylates with different alkyl chain lengths, including zinc acetate, zinc nonanoate, and zinc stearate. The effect of the reactivity and the amount of zinc precursor on nucleation and growth of ZnSe nanocrystals were investigated by ultraviolet-visible absorption and photoluminescence spectra. Result indicates that the growth and optical property of the resulting ZnSe nanocrystals are strongly dependent on the alkyl chain length and the amount of the zinc carboxylates and both shorter alkyl chain length, and more amount of zinc carboxylate will lead to faster growth of ZnSe nanocrystals. This allows that the controlled growth and excellent optical property of high-quality ZnSe nanocrystals can be achieved by combining the different reactivity and the used amount of zinc precursor, such as by using stoichiometric and reactive Zn precursor and Se precursor or by using larger amount of more unreactive Zn precursor relative to the highly reactive alkylamine-H 2Se complex precursor.

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          Bright UV-Blue Luminescent Colloidal ZnSe Nanocrystals

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            High Quality ZnSe and ZnS Nanocrystals Formed by Activating Zinc Carboxylate Precursors

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              Microwave synthesis of highly aligned ultra narrow semiconductor rods and wires.

              We report on the rapid production, characterization, and spectral properties of highly uniform, ultra narrow semiconductor (ZnS, ZnSe, CdS, CdSe) nanorods and nanowires by microwave irradiation. Quantum-confinement effects are manifested in the light absorption and the PL of the rods and wires. The uniformity of the rods and of the wires is demonstrated in their spontaneous assembly into highly ordered 2D supercrystals. We also observed the stepwise growth of the rods originating from nearly spherical nuclei.
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                Author and article information

                Journal
                Journal of Chemistry
                Journal of Chemistry
                Hindawi Limited
                2090-9063
                2090-9071
                2013
                2013
                : 2013
                :
                : 1-6
                Article
                10.1155/2013/791437
                5ff4b839-539c-4a83-af23-7f4dd635077c
                © 2013

                http://creativecommons.org/licenses/by/3.0/

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