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复合固体超强酸S_2O_8^(2-)/Fe_2O_3CoO催化合成乙酸正丁酯 被引量:9
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作者 朱学文 张应军 王军 《郑州轻工业学院学报(自然科学版)》 CAS 2004年第3期16-18,共3页
采用沉淀-浸渍法制备了复合固体超强酸S2O2-8/Fe2O3 CoO,并以S2O2-8/Fe2O3 CoO为催化剂,冰醋酸和正丁醇为原料合成乙酸正丁酯.结果表明:S2O2-8/Fe2O3 CoO的催化活性大于S2O2-8/Fe2O3和S2O2-8/Fe2O3 ZnO,CoO的存在对超强酸性有调变作用,... 采用沉淀-浸渍法制备了复合固体超强酸S2O2-8/Fe2O3 CoO,并以S2O2-8/Fe2O3 CoO为催化剂,冰醋酸和正丁醇为原料合成乙酸正丁酯.结果表明:S2O2-8/Fe2O3 CoO的催化活性大于S2O2-8/Fe2O3和S2O2-8/Fe2O3 ZnO,CoO的存在对超强酸性有调变作用,当V(正丁醇)∶V(乙酸)=3∶1,m(催化剂)∶m(乙酸)=0 8∶100,反应时间为2 5h时,乙酸正丁酯转化率≥98%,催化剂可重复使用4次以上. 展开更多
关键词 复合固体超强酸 S2O8^2-/Fe2O3—coo 催化合成 乙酸正丁酯 沉淀—浸渍法 催化活性
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Co_(1-x)Zn_xFe_2O_4 nanofiber: Synthesized by electrospinning and its magnetic properties 被引量:1
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作者 戴剑锋 路瑞娥 +2 位作者 付比 高锟 张亮亮 《Chinese Physics B》 SCIE EI CAS CSCD 2014年第3期535-540,共6页
Well-aligned and uniform Coo.sZno.2Fe204 nanofibers (NFs) are prepared by electrospinning via sol-gel and sub- sequent heat treatment. Each of the as-spun NFs has a diameter of about 300 nm and a smooth surface morp... Well-aligned and uniform Coo.sZno.2Fe204 nanofibers (NFs) are prepared by electrospinning via sol-gel and sub- sequent heat treatment. Each of the as-spun NFs has a diameter of about 300 nm and a smooth surface morphology. The scanning electron microscope (SEM) image shows that the diameter decreases to 70 nm after the Coo.sZno.2Fe204 NF has been annealed at 650℃ for 3 h. The structure and chemical of Co0.8Zn0.2Fe204 NF are investigated by X- ray diffraction (XRD) and energy dispersive X-ray spectroscopy (EDS), respectively. Single phase cubic spinel structure, Coo.sZno.2Fe204 NF, is successfully obtained after having been calcined at 550 ~C in air for 3 h, and a reduced lattice constant of the Coo.8Zno.2Fe204 NF provides the evidence of effective Zn2+ substitution. The magnetic measurements show that the substitution of Zn2+ for Co2+ , i.e., the introduction of non-magnetic Zn2+ ions into A sites, can increase the saturation magnetization (Ms) and reduce the coercivity (He). The obtained Hc results of different samples reveal that the critical single-domain size of the Co0.8Zn0.2Fe204 NF is approximately 44 nm. By doping Zn2+ with different concentra- tions, the morphologies of Co1-xZnxFe2O4 (0 〈 x 〈 0.5) NFs do not show obvious changes. For magnetic properties, the Ms increases and Hc decreases monotonically, respectively. 展开更多
关键词 alignment coo.8zno.2fe204 SINGLE-DOMAIN CO1-xZnxFe204
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