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不同體系水熱制備銀氧化錫復(fù)合粉體的研究
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中南大學(xué)博士后基金


Study on Silver Tin Oxide Composite Powder Preparation by Hydrothermal Method in Different Systems
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    摘要:

    分別采用氨水和檸檬酸作為溶液中銀離子的配體,草酸、亞硫酸鈉和檸檬酸作為還原劑,水熱制備Ag-SnO2復(fù)合粉體。對Ag-SnO2復(fù)合粉體進(jìn)行了差熱分析、X射線衍射、掃描電鏡和元素面掃描分析。結(jié)果表明:不同體系均可水熱制備銀氧化錫復(fù)合粉體。在以氨水為配體,分別以亞硫酸鈉和草酸為還原劑的體系中,銀和二氧化錫沉積完全。以亞硫酸鈉為還原劑的體系中所得復(fù)合粉體為片狀結(jié)構(gòu),厚度約為300 nm,而以草酸為還原劑所得復(fù)合粉體為球形結(jié)構(gòu),粒徑約為100 nm。以檸檬酸為配合劑和還原劑的水熱體系中二氧化錫沉積不完全,所得復(fù)合粉體為不規(guī)則球形,粒徑較小,約為30 nm

    Abstract:

    The silver tin oxide powders were prepared by hydrothermal method using ammonia and citric acid as complex of silver ions, and oxalic acid, sulfuric acid and citric acid as reductant. The Ag-SnO2 composite powders were characterized by differential thermal analysis (DTA), X-ray diffraction (XRD), scanning electron microscopy(SEM) and energy spectrum analysis. The results show that the silver tin oxide composite powders could be synthesized in different hydrothermal systems. In the system with ammonia as complex of silver ions, sodium sulfuric and oxalic acid as reductant, respectively, silver and tin oxide deposit completely. In the system with sodium sulfuric as reductant, the prepared composite powder is mainly flake structure with about 300 nm thickness. While in the system with oxalic acid as reductant, the prepared composite powder is spherical structure with about 100 nm particle size. In the system with citric acid as both complex and reductant, the tin oxide do not deposit completely and the prepared composite powder is irregularly spherical particle with smaller size of about 30 nm

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杜作娟,段學(xué)臣,黃小忠.不同體系水熱制備銀氧化錫復(fù)合粉體的研究[J].稀有金屬材料與工程,2010,39(4):623~627.[Du Zuojuan, Duan Xuechen, Huang Xiaozhong. Study on Silver Tin Oxide Composite Powder Preparation by Hydrothermal Method in Different Systems[J]. Rare Metal Materials and Engineering,2010,39(4):623~627.]
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  • 收稿日期:2009-04-14
  • 最后修改日期:2010-01-25
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