Li-doped ZnO Ceramic Target Preparation and RF Magnetron Sputtering ZnO Films
Shu Zhang
Abstract
Shu Zhang
Abstract
We successfully prepared high quality Li-doped ZnO ceramic targets with 70mm in diameter and 10~15mm in depth by solid-state reactions. The paper studied the influence of different concentration of Li2CO3 on the electrical properties of ZnO ceramic target. By comparing and analyzing the IR( insulative resistivity ) and tgδ(dielectric loss), the optimum concentration of Li2CO3 doped in ZnO ceramic target was obtained(2.2%mol ratio). And the optimum process for preparing ZnO-Li22% ceramic target was also realized through the investigation of physics and electrics of ZnO ceramic under the different sintering temperatures and molding pressure treatments. By using Li22%-doped ZnO ceramic as the target, the ZnO films with highly c-axis (002) preferred orientation were grown by RF magnetron sputtering on Si(100), glass and Pt(111)/Ti/SiO2/Si(100) substrates respectively.
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We successfully prepared high quality Li-doped ZnO ceramic targets with 70mm in diameter and 10~15mm in depth by solid-state reactions. The paper studied the influence of different concentration of Li2CO3 on the electrical properties of ZnO ceramic target. By comparing and analyzing the IR( insulative resistivity ) and tgδ(dielectric loss), the optimum concentration of Li2CO3 doped in ZnO ceramic target was obtained(2.2%mol ratio). And the optimum process for preparing ZnO-Li22% ceramic target was also realized through the investigation of physics and electrics of ZnO ceramic under the different sintering temperatures and molding pressure treatments. By using Li22%-doped ZnO ceramic as the target, the ZnO films with highly c-axis (002) preferred orientation were grown by RF magnetron sputtering on Si(100), glass and Pt(111)/Ti/SiO2/Si(100) substrates respectively.
Key concepts: Materials science, Ceramic, Doping, Sputter deposition, Composite material, Sintering, Sputtering, Electrical resistivity and conductivity