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首页> 外文期刊>Journal of Applied Polymer Science >Coating metal oxide particles via the combustion of deposited polymer precursors
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Coating metal oxide particles via the combustion of deposited polymer precursors

机译:通过燃烧沉积的聚合物前体涂覆金属氧化物颗粒

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Water-swellable chelated polymers were synthesized, starting either from (1) In(III) or In(III) and Sn(II) as central ions and N-trimethoxysilylpropylethylenediamine or ethylenediamine each together with ethylenediaminetetraacetic acid (EDTA) as coordination ligands, or from (2) Ag(I) as the central ion and ethylene glycol (EG) and EDTA as coordination ligands, as follows: The nitrate(s) of the above metal ions together with the corresponding ligands were dissolved in water, and the solution was concentrated by heating to carry out the chelating polymerization. After cooling, the polymer was dried and ground to a fine powder, which was then mixed with a metal oxide powder by grinding in the presence of a small amount of water. A paste was thus obtained, which, after drying, was calcined at 200 degrees C and subsequently at 750 degrees C. The polymer became a sticky gel at 200 degrees C, which adhered to the surface of the metal oxide particles; it was converted to an inorganic coating, In2O3-SnO2-SiO2, In2O3-SnO2, SnO2, or Ag, during the subsequent calcination at 750 degrees C. Two metal oxide powders, namely, the electrically conductive In2O3 and the nonconductive SnO2, were used as substrates. Scanning electron microscopy (SEM) and energy dispersive spectroscopy (EDS) indicated that the substrate particles were coated after calcination by a multicomponent oxide or silver layer. Temperature-resistant electrically antistatic film could be prepared by using the metal oxide coated In2O3 particles as pigments and polypropylsiloxane as the binder. The Ag-coated SnO2 powder had a conductivity sigma = 1.0 x 10(-3) S cm(-1) at 8.6 vol % Ag, while the mechanically mixed powders of Ag and SnO2 exhibited a conductivity of 2.0 x 10(-7) S cm(-1) at 16 vol %. (C) 1998 John Wiley & Sons, Inc. [References: 15]
机译:合成了水溶胀性螯合聚合物,其起始原料为(1)作为中心离子的In(III)或In(III)和Sn(II),以及分别与N-三甲氧基甲硅烷基丙基乙二胺或乙二胺以及乙二胺四乙酸(EDTA)作为配位体,或(2)以Ag(I)为中心离子,并以乙二醇(EG)和EDTA作为配位体,方法如下:将上述金属离子的硝酸盐与相应的配体一起溶解在水中,通过加热浓缩以进行螯合聚合。冷却后,将聚合物干燥并研磨成细粉,然后在少量水的存在下通过研磨将其与金属氧化物粉末混合。由此获得糊状物,将其干燥后在200℃下随后在750℃下煅烧。聚合物在200℃下变为粘性凝胶,其粘附至金属氧化物颗粒的表面;在随后的750摄氏度煅烧过程中,将其转化为无机涂层In2O3-SnO2-SiO2,In2O3-SnO2,SnO2或Ag。使用了两种金属氧化物粉末,即导电的In2O3和不导电的SnO2作为基材。扫描电子显微镜(SEM)和能量色散谱(EDS)表明,煅烧后,基底颗粒被多组分氧化物或银层涂覆。可以通过使用涂覆有金属氧化物的In2O3颗粒作为颜料并使用聚丙基硅氧烷作为粘合剂来制备耐高温抗静电膜。涂有Ag的SnO2粉末在8.6体积%Ag下的电导率sigma = 1.0 x 10(-3)S cm(-1),而Ag和SnO2的机械混合粉末的电导率是2.0 x 10(-7)在16体积%时为Scm(-​​1)。 (C)1998 John Wiley&Sons,Inc. [参考:15]

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