Hydrothermally grown ZnO nanoflowers for environmental remediation and clean energy applications

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Abstract

Well-crystalline flower-shaped ZnO nanostructures were synthesized by simple hydrothermal process at low-temperature of 145°C and utilized as a photocatalyst and photo-anode material for photocatalytic degradation and dye-sensitized solar cell applications, respectively. The detailed morphological and the structural characterizations revealed that the synthesized products were flower-shaped, grown in very high-density, and possessed well-crystalline wurtzite hexagonal phase. The chemical composition confirmed the pure phase and good optical properties of as-synthesized ZnO flowers. The as-synthesized ZnO flowers were used as an efficient photocatalyst for the photocatalytic degradation of Rhodamine B which exhibit ∼84% degradation within 140 min. Moreover, the as-synthesized ZnO flowers were utilized as photo-anode material for the fabrication of dye-sensitized solar cells (DSSCs) which exhibited overall light-to-electricity conversion efficiency of ∼1.38%, open-circuit current (V OC) of 0.621 V, short-circuit current (J SC) of ∼3.52 mA/cm 2 and fill factor (FF) of 0.64. © 2012 Elsevier Ltd.

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Umar, A., Akhtar, M. S., Al-Hajry, A., Al-Assiri, M. S., & Almehbad, N. Y. (2012). Hydrothermally grown ZnO nanoflowers for environmental remediation and clean energy applications. Materials Research Bulletin, 47(9), 2407–2414. https://doi.org/10.1016/j.materresbull.2012.05.028

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