4.4 Article

Template free-solvothermaly synthesized copper selenide (CuSe, Cu2-xSe, β-Cu2Se and Cu2Se) hexagonal nanoplates from different precursors at low temperature

期刊

JOURNAL OF CRYSTAL GROWTH
卷 312, 期 19, 页码 2804-2813

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jcrysgro.2010.06.014

关键词

Crystal morphology; Crystal Structure; X-ray diffraction; Growth from solutions; Nanomaterials; Semiconducting materials

资金

  1. University Grant Commission, New Delhi

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Nonstoichiometric (Cu2-xSe) and stoichiometric (CuSe, beta-Cu2Se and Cu2Se) copper selenide hexagonal nanoplates have been synthesized using different general and convenient copper sources, e.g. copper chloride, copper sulphate, copper nitrate, copper acetate, elemental copper with elemental selenium, friendly ethylene glycol and hydrazine hydrate in a defined amount of water at 100 degrees C within 12 h adopting the solvothermal method. Phase analysis, purity and morphology of the product have been well studied by X-ray diffraction (XRD), field emission scanning electron microscopy (FESEM), transmission electron microscopy (TEM), high resolution transmission electron microscopy (HRTEM) and energy dispersive X-ray diffraction (EDAX) techniques. The structural and compositional analysis revealed that the products were of pure phase with corresponding atomic ratios. SEM, TEM and HRTEM analyses revealed that the nanoplates were in the range 200-450 nm and the as-prepared products were uniform and highly crystallized. The nanoplates consisted of {0 0 1} facets of top-bottom surfacesand {1 1 0} facets of the other six side surfaces. This new approach encompasses many advantages over the conventional solvothermal method in terms of product quality (better morphology control with high yield) and reaction conditions (lower temperatures). Copper selenide hexagonal nanoplates obtained by the described method could be potential building blocks to construct functional devices and solar cell. This work may open up a new rationale on designing the solution synthesis of nanostructures for materials possessing similar intrinsic crystal symmetry. On the basis of the carefully controlled experiments mentioned herein, a plausible formation mechanism of the hexagonal nanoplates was suggested and discussed. To the best of our knowledge, this is the first report on nonstoichiometric (Cu2-xSe) as well as stoichiometric (CuSe, beta-Cu2Se and Cu2Se) copper selenide hexagonal nanoplates with such full control of morphologies and phases by this method under mild conditions. (C) 2010 Elsevier B.V. All rights reserved.

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