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鹽介質(zhì)固相反應(yīng)法制備納米鐵酸鑭及其氣敏性能
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Gas-Sensing Properties of Nano-LaFeO3 Prepared by a Simple Molten-Salt Method
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    摘要:

    以La2O3和FeCl3·6H2O為主要原料,利用鹽介質(zhì)固相反應(yīng)法制備了LaFeO3納米晶。用XRD、TEM分別對(duì)不同反應(yīng)溫度下的產(chǎn)品進(jìn)行了物相和形貌表征,并研究了其對(duì)三乙胺、乙醇、汽油、苯和丙酮等的敏感性能。結(jié)果表明:反應(yīng)溫度為800 ℃時(shí),產(chǎn)物為均相LaFeO3,粒度較均勻,平均粒徑約為40 nm;將樣品制成燒結(jié)型氣敏元件,對(duì)三乙胺有較高的靈敏度和選擇性,工作溫度為250 ℃時(shí)對(duì)25 μg/g三乙胺的靈敏度仍達(dá)7.9,響應(yīng)、恢復(fù)時(shí)間分別僅需6和13 s。

    Abstract:

    Nanocrystalline LaFeO3 was prepared by a simple molten-salt method with La2O3 and FeCl3·6H2O as main starting materials. The nanocrystal1ine samples were characterized by X-ray diffraction (XRD) and transmission electron microscopy (TEM) for the phases and morphology. Their gas-sensing properties to triethylamine, C2H5OH, gasoline, C6H6 and CH3COCH3 were investigated. The results demonstrated that pure LaFeO3 nanocrystal1ine with uniform grain sizes and an average diameter of about 40 nm was formed when calcined at 800 ℃. Moreover, the gas sensor made of the nanocrystalline LaFeO3 sample showed high sensitivity as well as good selectivity to dilute triethylamine. The LaFeO3 sensor showed the sensitivity as high as 7.9 to even 25 μg/g triethylamine at 250 ℃, and the response and recovery time are 6 and 13 s, respectively.

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蔣東麗,儲(chǔ)向峰.鹽介質(zhì)固相反應(yīng)法制備納米鐵酸鑭及其氣敏性能[J].稀有金屬材料與工程,2009,38(10):1848~1851.[Jiang Dongli, Chu Xiangfeng. Gas-Sensing Properties of Nano-LaFeO3 Prepared by a Simple Molten-Salt Method[J]. Rare Metal Materials and Engineering,2009,38(10):1848~1851.]
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  • 收稿日期:2008-10-27
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