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水热法制备磁性纳米α-Fe_2O_3改性涤纶织物 被引量:2
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作者 宋杰瑶 冯红莲 张辉 《西安工程大学学报》 CAS 2013年第2期144-148,154,共6页
以硝酸铁和草酸为原料,在去离子水溶液中采用水热法直接在涤纶织物纤维表面包覆纳米α-Fe2O3颗粒.采用单因素分析方法,研究硝酸铁浓度、反应温度和时间,分散剂种类和用量,氢氧化钠刻蚀和偶联剂改性对纳米α-Fe2O3包覆涤纶织物的影响,并... 以硝酸铁和草酸为原料,在去离子水溶液中采用水热法直接在涤纶织物纤维表面包覆纳米α-Fe2O3颗粒.采用单因素分析方法,研究硝酸铁浓度、反应温度和时间,分散剂种类和用量,氢氧化钠刻蚀和偶联剂改性对纳米α-Fe2O3包覆涤纶织物的影响,并借助扫描电镜、X射线衍射和振动样品磁强计对涤纶纤维改性后表面形貌、结构和磁性能进行了表征.结果表明,涤纶织物经过水热改性之后,纤维表面的附着物为赤铁矿纳米α-Fe2O3颗粒,晶粒大小在21.9nm左右,织物饱和磁化强度为0.003 2emu.g-1,矫顽力为203.0Oe.硝酸铁和草酸制备纳米α-Fe2O3包覆涤纶织物最佳工艺为:硝酸铁与草酸摩尔比为2∶3,硝酸铁用量0.03mol/l,反应温度150℃,反应时间4h.氢氧化钠刻蚀或者A-151(乙烯基三乙氧基硅烷)偶联改性能够增加织物表面纳米α-Fe2O3包覆量. 展开更多
关键词 涤纶织物 纳米α-Fe2O3颗粒 水热处理
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Chemoselective Transfer Hydrogenation of Cinnamaldehyde over Activated Charcoal Supported Pt/Fe3O4 Catalyst 被引量:1
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作者 张勇 陈春 +5 位作者 龚万兵 宋杰瑶 苏燕平 张海民 汪国忠 赵惠军 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2017年第4期467-473,I0002,共8页
A variety of spherical and structured activated charcoal supported Pt/Fe3O4 composites with an average particle size of ~100 nm have been synthesized by a self-assembly method using the difference of reduction potenti... A variety of spherical and structured activated charcoal supported Pt/Fe3O4 composites with an average particle size of ~100 nm have been synthesized by a self-assembly method using the difference of reduction potential between Pt (Ⅳ) and Fe (Ⅱ) precursors as driving force. The formed Fe3O4 nanoparticles (NPs) effectively prevent the aggregation of Pt nanocrystallites and promote the dispersion of Pt NPs on the surface of catalyst, which will be favorable for the exposure of Pt active sites for high-efficient adsorption and contact of substrate and hydrogen donor. The electron-enrichment state of Pt NPs donated by Fe304 nanocrystallites is corroborated by XPS measurement, which is responsible for promoting and activating the terminal C=O bond of adsorbed substrate via a vertical configuration. The experimental results show that the activated charcoal supported Pt/Fe3O4 catalyst exhibits 94.8% selectivity towards cinnamyl alcohol by the transfer hydrogenation of einnamaldehyde with Pt loading of 2.46% under the optimum conditions of 120 ℃ for 6 h, and 2-propanol as a hydrogen donor. Additionally, the present study demonstrates that a high-efficient and recyclable catalyst can be rapidly separated from the mixture due to its natural magnetism upon the application of magnetic field. 展开更多
关键词 Activated charcoal supported Pt/Fe3O4 catalysts Redox method Transfer hydrogenation Cinnamaldehyde Cinnamyl alcohol
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