Structural and Photocatalytic Studies of Ce and Dy Co-doped ZnO Nanoflowers
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Publisher
Springer Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-16-4321-7_62
Reference44 articles.
1. Thiyagarajan P, Kottaisamy M, Sethupathi K, Rao MSR (2009) A new red colour emitting phosphor—ZnS: Mn co-doped with Ba for electroluminescent (EL) displays. J Displays 30:202
2. Zhang C, Lin J (2012) Defect-related luminescent materials: synthesis, emission properties and applications. Chem Soc Rev 41:7938
3. Shang M, Li G, Yang D, Kang X, Peng C, Cheng Z, Lin J (2011)(Zn, Mg)2GeO4: Mn2+ submicrorods as promising green phosphors for field emission displays: hydrothermal synthesis and luminescence properties. Dalton Trans 40:9379
4. Korake PV, Dhabbe RS, Kadam AN, Gaikwad YB, Garadkar KM (2014) Highly active lanthanum doped ZnO nanorods for photodegradation of metasystox. J Photochem Photobiol B 130:11
5. Özgür Ü, Alivov YI, Liu C, Teke A, Reshchikov MA, Doğan S, Avrutin V, Cho SJ, Morkoç H (2005) A comprehensive review of ZnO materials and devices. J Appl Phys 98:041301
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