Zn0.4Cd0.4 COMPOSITE FABRICATION AND CHARACTERIZATION

İskender ÖZKUL, Safiye Jameel BİRO

Öz


ZnO-CdO composite was prepared with hydrothermal method. The structural, morphological, optical, and electrical properties of the nanocomposite have been carried out using X-ray diffraction (XRD), FTIR, scanning electron microscopy (SEM), UV-VIS-NIR spectrophotometer, and two probe, respectively. TG-DTA analysis was done to determine the thermal stability. The compositional analysis was done by EDX. The band gap of the composite were found to be 2.84, 2.78 and 3.06 eV respectively with increasing the content of Zn precursor.


Tam Metin:

PDF (English)

Referanslar


Müller K., Takashige M. & Bednorz J.,1987, "Flux trapping and superconductive glass state in La 2 CuO 4− y: Ba", Physical review letters, 58, 1143.

Gao L., Xue Y., Chen F., Xiong Q., Meng R., Ramirez D., Chu C., Eggert J. & Mao H.,1994, "Superconductivity up to 164 K in HgBa 2 Ca m− 1 Cu m O 2 m+ 2+ δ (m= 1, 2, and 3) under quasihydrostatic pressures", Physical Review B, 50, 4260.

Brus L.,1998, "Chemical approaches to semiconductor nanocrystals", Journal of Physics and Chemistry of Solids, 59, 459-65.

Xia Y., Yang P., Sun Y., Wu Y., Mayers B., Gates B., Yin Y., Kim F. & Yan H.,2003, "One‐dimensional nanostructures: synthesis, characterization, and applications", Advanced materials, 15, 353-89.

Wang N., Cai Y. & Zhang R.,2008, "Growth of nanowires", Materials Science and Engineering: R: Reports, 60, 1-51.

Yu P.Y. & Cardona M. (2010) Fundamentals of semiconductors: physics and materials properties. Springer.

Wang W.-W. & Zhu Y.-J.,2004, "Shape-controlled synthesis of zinc oxide by microwave heating using an imidazolium salt", Inorganic Chemistry Communications, 7, 1003-5.

Shan C., Liu Z., Zhang Z., Shen D. & Hark S.,2006, "A simple route to porous ZnO and ZnCdO nanowires", The Journal of Physical Chemistry B, 110, 11176-9.

Kim J.H., Hong Y.C. & Uhm H.S.,2007, "Binary oxide material made from a mixture of Zn and Cd in a microwave plasma", Chemical physics letters, 443, 122-6.

Li G., Wang X., Wang Y., Shi X., Yao N. & Zhang B.,2008, "Synthesis and field emission properties of ZnCdO hollow micro–nano spheres", Physica E: Low-dimensional Systems and Nanostructures, 40, 2649-53.

Wang F., He H., Ye Z., Zhu L., Tang H. & Zhang Y.,2005, "Raman scattering and photoluminescence of quasi-aligned ternary ZnCdO nanorods", Journal of Physics D: Applied Physics, 38, 2919.

Jule L.T., Dejene F.B., Ali A.G., Roro K.T., Hegazy A., Allam N.K. & El Shenawy E.,2016, "Wide visible emission and narrowing band gap in Cd-doped ZnO nanopowders synthesized via sol-gel route", Journal of Alloys and Compounds, 687, 920-6.

Klug H.P. & Alexander L.E. (1954) X-ray diffraction procedures. Wiley New York.

Zhang J., Zhao S.-Q., Zhang K., Zhou J.-Q. & Cai Y.-F.,2012, "A study of photoluminescence properties and performance improvement of Cd-doped ZnO quantum dots prepared by the sol–gel method", Nanoscale research letters, 7, 405.

Rana N., Chand S. & Gathania A.K.,2015, "Tailoring the structural and optical properties of ZnO by doping with Cd", Ceramics International, 41, 12032-7.

Martellucci S., Chester A.N. & Mignani A.G.,2002, "Optical Sensors and Microsystems", New York, Boston, London.

Özgür Ü., Alivov Y.I., Liu C., Teke A., Reshchikov M., Doğan S., Avrutin V., Cho S.-J. & Morkoc H.,2005, "A comprehensive review of ZnO materials and devices", Journal of Applied Physics, 98, 11.

Chandiramouli R. & Jeyaprakash B.,2013, "Review of CdO thin films", Solid State Sciences, 16, 102-10.

Saravanan R., Gracia F., Khan M.M., Poornima V., Gupta V.K., Narayanan V. & Stephen A.,2015, "ZnO/CdO nanocomposites for textile effluent degradation and electrochemical detection", Journal of Molecular Liquids, 209, 374-80.

El-Nahass M., Farag A. & Atta A.,2009, "Influence of heat treatment and gamma-rays irradiation on the structural and optical characterizations of nano-crystalline cobalt phthalocyanine thin films", Synthetic Metals, 159, 589-94.

Ocakoglu K., Mansour S.A., Yildirimcan S., Al-Ghamdi A.A., El-Tantawy F. & Yakuphanoglu F.,2015, "Microwave-assisted hydrothermal synthesis and characterization of ZnO nanorods", Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 148, 362-8.


Madde Ölçümleri

Ölçüm Çağırılıyor ...

Metrics powered by PLOS ALM

Refback'ler

  • Şu halde refbacks yoktur.


Telif Hakkı (c) 2018 Selçuk Üniversitesi Mühendislik, Bilim ve Teknoloji Dergisi

Creative Commons License
This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.

Tarayan Veri Tabanları

   ResearchBib 中国知网BASE Logo googleDirectory of Research Journals Indexing LogoOnline Access to Research in the EnvironmentDTUbroadcastlogo PBN - BETA versionjournal tocs uk ile ilgili görsel sonucuFind in a library with WorldCatDiscovery: Library search made simple. Return to JournalSeek Homejatstech ile ilgili görsel sonucuExLibris header imageStanford University Libraries