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Deep level states and negative photoconductivity in n-ZnO/p-Si hetero-junction diodes

Authors
Cho, Seong GookNahm, Tschang-UhKim, Eun Kyu
Issue Date
Mar-2014
Publisher
ELSEVIER SCIENCE BV
Keywords
ZnO; Defect; Photoresponse
Citation
CURRENT APPLIED PHYSICS, v.14, no.3, pp.223 - 226
Indexed
SCIE
SCOPUS
KCI
Journal Title
CURRENT APPLIED PHYSICS
Volume
14
Number
3
Start Page
223
End Page
226
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/143610
DOI
10.1016/j.cap.2013.11.026
ISSN
1567-1739
Abstract
Negative photoconductivity (NPC) was observed in n-ZnO/p-Si heterojunction diode grown by ultra-high vacuum sputtering method under nitrogen ambient. Under the illumination of ultra-violet light, positive photoconductivity was observed at low bias voltages, whereas NPC was observed at high bias voltages. The defect states in the ZnO layers grown on Si were analyzed by photoluminescence and deep level transient spectroscopy measurements. Two deep levels were measured at E-c-0.51 eV and E-c-0.54 eV, which might be originated from oxygen vacancy and nitrogen atom related defects, respectively. Based on the simulation of band diagram, the defect states were located below Fermi level at zero bias voltage. However, as increasing the bias voltages, NPC was observed due to the increase of empty defect states. This analysis allowed us to consider the possibility that the NPC phenomenon in n-ZnO/p-Si heterojunction diode is originated dominantly from the defect states as a carrier recombination center in ZnO layer.
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