Band Gap Narrowing and Widening of ZnO Nanostructures and Doped Materials
Author:
Publisher
Springer Science and Business Media LLC
Subject
Condensed Matter Physics,General Materials Science
Link
http://link.springer.com/content/pdf/10.1186/s11671-015-1034-9
Reference25 articles.
1. Willander M, Zhao QX, Hu QH, Klason P, Kuzmin V, Al-Hilli SM, et al. Fundamentals and properties of zinc oxide nanostructures: optical and sensing applications. Supperlattice Microst. 2008;43:352–61.
2. Caglar M, Ilican S, Caglar Y, Yakuphonoglu F. Electrical and optical properties of ZnO nanostructured thin film. Mater Chem Phys. 2009;114:194–8.
3. Sahoo T, Tripathy SK, Yu YT, Ahn HK, Shin DC, Lee IH. Morphology and crystal quality investigation of hydrothermally synthesized ZnO micro rods. Mater Res Bull. 2008;43:2060–8.
4. Mazloumi M, Taghavi S, Arami H, Zanganeh S, Kajbafla A, Shayegh MR, et al. Self assembly of ZnO nanoparticles and subsequent formation of hollow microspheres. J Alloys and Comp. 2009;468:303–7.
5. Li F, Bi W, Liu L, Li Z, Huang X. Preparation and characterization of ZnO nanospindles and ZnO @ ZnS core-shell microspindles. Colloids and Surfaces A: Physiocochem Eng Aspects. 2009;334:160–4.
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