Highly conductive Gallium‐doped zinc oxide (Zn 1− x Ga x O) powder was prepared by calcining precursor that was synthesized from ZnSO 4 ·7H 2 O, GaCl 3 , and NH 4 HCO 3 by the co‐precipitation method. The effects of temperature, heating time, and atmosphere on the calcination process were studied, and we found that these factors are important to control the electrical conductivity, particle size, and agglomeration of Zn 1− x Ga x O powder. By studying these processing conditions, we found that the optimum one is calcining the precursor in H 2 at 540°C for about 1.5 h, and the product has a specific surface area higher than 28 m 2 /g and volume resistivity lower than 16.8 Ω·cm. The chemistry details of the doping process were also discussed based on the experimental results.
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Du et al. (2006) studied this question.
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