Study of Dark Conductivity and Photoconductivity in Dysprosium Doped Zinc Oxide Synthesized by Heat Treatment Method
Author:
Publisher
Springer Science and Business Media LLC
Subject
Engineering (miscellaneous)
Link
http://link.springer.com/content/pdf/10.1007/s40009-013-0164-9.pdf
Reference45 articles.
1. Zhang DH, Brodie DH (1995) Photoresponse of polycrystalline ZnO films deposited by rf bias sputtering. Thin Solids Films 261:334
2. Takahashi Y, Kanamori M, Kanamori M, Kondoh A, Minoura H, Ohya Y (1994) Photoconductivity of ultrathin zinc oxide films. Jpn J Appl Phys 33:6611
3. Torres CT, Cruzz MLG, Castaneda L, Rojo RR, Rivera LT, Maldonado A, Alejo MA, Martinnez (2012) Photoconducting, photoluminescence and optical kerr nonlinear effect in zinc oxide films containing chromium nanoclusters. J Lumin 132:1083
4. Mishra SK, Srivastava RK, Srivastava S, Pandey AC, Prakash SG (2011) Photoluminescence and ultraviolet photoresponse in ZnO nano phosphor prepared by thermal decomposition of zinc acetate. Adv Mater Lett 2(4):298
5. Yadav HK, Gupta V (2012) A comparative study of ultraviolet photoconductivity relaxation in zinc oxide thin films deposited by different techniques. J Appl Phys 111:102809
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