• Home
  • Browse
    • Current Issue
    • By Issue
    • By Author
    • By Subject
    • Author Index
    • Keyword Index
  • Journal Info
    • About Journal
    • Aims and Scope
    • Editorial Board
    • Editorial Staff
    • Publication Ethics
    • Indexing and Abstracting
    • Related Links
    • FAQ
    • Peer Review Process
    • News
  • Guide for Authors
  • Submit Manuscript
  • Reviewers
  • Contact Us
 
  • Login
  • Register
Home Articles List Article Information
  • Save Records
  • |
  • Printable Version
  • |
  • Recommend
  • |
  • How to cite Export to
    RIS EndNote BibTeX APA MLA Harvard Vancouver
  • |
  • Share Share
    CiteULike Mendeley Facebook Google LinkedIn Twitter Telegram
Journal of Nanoanalysis
Articles in Press
Current Issue
Journal Archive
Volume Volume 4 (2017)
Issue Issue 3
Issue Issue 2
Issue Issue 1
Volume Volume 3 (2016)
Volume Volume 2 (2015)
Volume Volume 1 (2014)
(2017). Hydrothermal Synthesis, Structural and Catalytic Studies of CuBi2O4 Nanoparticles. Journal of Nanoanalysis, 4(3), 239-246. doi: 10.22034/jna.2017.539367
. "Hydrothermal Synthesis, Structural and Catalytic Studies of CuBi2O4 Nanoparticles". Journal of Nanoanalysis, 4, 3, 2017, 239-246. doi: 10.22034/jna.2017.539367
(2017). 'Hydrothermal Synthesis, Structural and Catalytic Studies of CuBi2O4 Nanoparticles', Journal of Nanoanalysis, 4(3), pp. 239-246. doi: 10.22034/jna.2017.539367
Hydrothermal Synthesis, Structural and Catalytic Studies of CuBi2O4 Nanoparticles. Journal of Nanoanalysis, 2017; 4(3): 239-246. doi: 10.22034/jna.2017.539367

Hydrothermal Synthesis, Structural and Catalytic Studies of CuBi2O4 Nanoparticles

Article 8, Volume 4, Issue 3, Autumn 2017, Page 239-246  XML PDF (1008 K)
Document Type: Original Research Paper
DOI: 10.22034/jna.2017.539367
Abstract
In the present work CuBi2O4 nano-spinel has been synthesized via mild hydrothermal method
at 180°C for 10 h. The synthesized nanomaterials were characterized by several techniques
to emphasis the structure and properties of produced materials. The crystal structure was
investigated by X-ray powder diffraction method and the values of the refined unit cell volume
and the structure properties were studied by using the Rietveld analysis is done using Fullprof
program. The results shew the formation of tetrahedral structure with space group P4/
ncc for this sample. Also, the morphologies of the synthesized materials were figured out
by field emission scanning electron microscope (FE-SEM). According to the FESEM images,
several nano cubic form of particles grew on micro spherical particles. As well, the catalytic
performance of obtained CuBi2O4 was studied in Biginelli reaction. The reaction conditions of
this study optimized by experimental design method. This experiment stablished high catalytic
performance of copper bismuth oxide in compare with some other metal oxide catalysts. Also,
the results shew this product is reusable homogenous catalyst.
Keywords
CuBi2O4; Hydrothermal Method; Catalytic activity; Structural study
Statistics
Article View: 41
PDF Download: 10
Home | Glossary | News | Aims and Scope | Sitemap
Top Top

Creative Commons

All available content on Journal of Nanoanalysis (JNA) are licensed under the Creative Commons Attribution 4.0 International (CC-BY 4.0) License.

web server statistics Real Time Web Analytics Clicky

Journal Management System. Designed by sinaweb.