Simple Hydrolysis Synthesis of Uniform Rice-Shaped β -FeOOH Nanocrystals and Their Transformation to α -Fe 2 O 3 Microspheres

  • Singh B
  • Sharma N
  • Kumar R
  • et al.
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Abstract

In the synthesis of nanostructure materials a specific emphasis has been focused on the control of shape and orientation of nanocrystals to obtain prerequisite properties of the materials. Nanorice is a new hybrid nanoparticle prolate geometry of nanoshells with reduced symmetry having new exciting optical behavior. Rice-shaped β -FeOOH nanocrystals have been synthesized by a simple hydrolysis chemical method using ferric aqueous solution and urea as surfactant. The successive calcination of β -FeOOH nanocrystals at 650°C results in the formation of the porous α -Fe 2 O 3 (hematite) microspheres. The as-synthesized yield of β -FeOOH nanocrystals was characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), energy dispersive X-ray analysis (EDAX), and optical spectroscopy. The successive transformation of rice-shaped β -FeOOH nanostructures into porous α -Fe 2 O 3 (hematite) microspheres through calcination process was confirmed by XRD, SEM, and EDAX studies. The water contact angle of as-prepared α -Fe 2 O 3 microspheres shows hydrophobic behavior of the material.

Figures

  • Figure 1: XRD patterns of (a) as-prepared 𝛽-FeOOH nanocrystals and (b) 𝛼-Fe 2 O 3 microspheres after calcining at 650∘C for 2 hrs.
  • Figure 2: SEM micrograph of (a) as-prepared 𝛽-FeOOH nanocrystals and (b) 𝛼-Fe 2 O 3 microspheres after calcining at 650∘C for 2 hrs.
  • Figure 3: EDAX spectrum of (a) as-prepared 𝛽-FeOOH nanocrystals and (b) 𝛼-Fe 2 O 3 microspheres after calcining at 650∘C for 2 hrs.
  • Figure 4: Absorption spectra of as-prepared 𝛽-FeOOH nanocrystals. Inset shows the plot of (𝛼ℎ])2 versus ℎ] for determination of optical band gap.
  • Figure 5: Contact angle image of 𝛼-Fe 2 O 3 microspheres surface after dropping the distilled deionized water droplet on the 𝛼-Fe 2 O 3 surface coating.
  • Table 1: Calculated solid-vapor (𝛾sv) surface energy with dispersive (𝛾𝐷sv) and polar (𝛾 𝑃 sv) components of 𝛼-Fe2O3 (contact angle 𝜃𝑤: 113 ∘).
  • Figure 6: Schematic illustration of the possible formation mechanism of rice-shaped 𝛽-FeOOH nanocrystals and their transformation to 𝛼-Fe 2 O 3 microspheres.

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APA

Singh, B. P., Sharma, N., Kumar, R., & Kumar, A. (2015). Simple Hydrolysis Synthesis of Uniform Rice-Shaped β -FeOOH Nanocrystals and Their Transformation to α -Fe 2 O 3 Microspheres. Indian Journal of Materials Science, 2015, 1–7. https://doi.org/10.1155/2015/918424

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