Acta Physica Sinica, Volume. 68, Issue 8, 087101-1(2019)

Effect of intrinsic defects and copper impurities co-existing on electromagnetic optical properties of ZnO: First principles study

Mei-Ling Zhang1,2、*, Yu-Hong Chen1, Cai-Rong Zhang1, and Gong-Ping Li2
Author Affiliations
  • 1School of Science, Lanzhou University of Technology, Lanzhou 730050, China
  • 2School of Nuclear Science and Technology, Lanzhou University, Lanzhou 730000, China
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    For ZnO which is not magnetic itself, it is of great significance to study the source of ferromagnetism and its photoelectric properties when Cu doped ZnO coexists with internal defects. The effects of intrinsic defects on the electronic structures, magnetic and optical properties of Cu-doped ZnO (CuZn) are studied by using first principle calculations based on the density functional theory combined with the Hubbard U (DFT + Ud + Up). The results indicate that the doped Cu is a substitute acceptor, and the manufacturing environment plays an important role in forming the CuZn with internal defects. Under the oxygen-rich condition, the doped Cu is favorable for forming internal defects, and the CuZn—Oi bonds are easily formed. On the contrary, the Cu-doped ZnO is not conducive to forming internal defects under the O-poor condition. The 3d electrons of the substitute Cu form the unoccupied accepter energy level at the top of valence band, generating p-type conduction. Comparing with CuZn system, the carrier concentration of positive hole decreases in CuZn-VO system and the conductivity is poor. In the CuZn-VZn system, the number of carrier holes is almost constant, and the conductivity has no effect. In the CuZn-Oi model, the carrier concentration of positive holes increases and the conductivity gets better. The pure ZnO system exhibits non-magnetic behavior. The study also reveals that the smaller the electro-negativity, the greater the contribution to magnetic moment is when O atom is connected with Cu atom. The magnetic moments in CuZn and CuZn-Oi system are mainly generated by the coupling between the Cu 3d and the O 2p orbital on the c axis. When VO and VZn exist in CuZn, the magnetic moment is mainly caused by the strong coupling of Cu 3d with O 2p in ab plane. In the presence of VZn in CuZn, the magnetism also contains the contribution of the spin polarization of O(5, 6) atoms around VZn. In the defect states of CuZn-VZn and CuZn-Oi, the induced states in the deep energy levels are generated by the interaction between the O-O 2s orbital electrons. The reduced optical band gap of the CuZn model results in the red shift of absorption spectrum. The enhanced absorption and reflection of the CuZn-VZn model reduce the transmission.

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    Mei-Ling Zhang, Yu-Hong Chen, Cai-Rong Zhang, Gong-Ping Li. Effect of intrinsic defects and copper impurities co-existing on electromagnetic optical properties of ZnO: First principles study[J]. Acta Physica Sinica, 2019, 68(8): 087101-1

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    Paper Information

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    Received: Dec. 20, 2018

    Accepted: --

    Published Online: Oct. 29, 2019

    The Author Email:

    DOI:10.7498/aps.68.20182238

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