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Synthesis of nano-sized powders of transparent conductive aluminum-doped zinc oxide by electrolysis-modified co-precipitation method

机译:用电解改性共沉淀法合成透明导电铝掺杂氧化锌氧化物的纳米粉末

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Nano-sized powders of transparent conductive aluminum-doped zinc oxide (AZO) have been successfully prepared by electrolysis-modified co-precipitation method. By adding ammonium hydroxide into the precursor solution prepared by electrolytic dissolution of zinc metal in a buffered electrolyte solution of nitric acid and ammonium nitrate with adequate addition of aluminum nitrate, co-precipitate precursors of AZO with particle size between 30 to 60 nm were produced. After washing, filtering, and drying of the co-precipitates, nano-powders of AZO with wurtzite structure were produced when the dried co-precipitate precursors were calcined at temperature above 800°C. By aging at pH=5 and co-precipitating at pH=8.0, the atomic ratio of Al/Zn of the nano-powders could be maintained throughout the synthesis. After calcining at 1000°C in air for 2 hours, nano-sized powders of AZO with ZnO wurtzite structure and particle size between 200 to 500 nm were synthesized. Finally, it was found that both the particle sizes of co-precipitate precursors and calcined nano-powders of AZO could be decreased by increasing the pH of the electrolyte solution for electrolytic dissolution.
机译:通过电解改性的共沉淀法制备了透明导电铝掺杂氧化锌(AZO)的纳米尺寸粉末。通过将氢氧化铵加入通过在硝酸硝酸的硝酸和硝酸铵中的硝酸锌金属的电解溶解制备的前体溶液,通过足够加入硝酸铝,产生粒径为30至60nm之间的偶氮前体。在洗涤,过滤和干燥共沉淀物后,当在高于800℃的温度下煅烧干燥的共析出前体时,产生具有紫立岩结构的氮杂氮杂物的纳米粉末。通过在pH = 5时衰老并在pH = 8.0处共沉淀,可以在整个合成中保持纳米粉末的Al / Zn的原子比。在空气中煅烧1000℃2小时后,合成ZnO紫立岩结构的纳米粉末粉末​​,粒径为200至500nm。最后,发现通过增加电解质溶解的电解质溶液的pH,可以降低共沉淀前体和钙的纳米粉末的颗粒尺寸和氧化铝的煅烧纳米粉末。

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