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氧气辅助法制备氮化硼纳米管 被引量:2
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作者 李娟 吴浩 +1 位作者 陈拥军 徐盛明 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2014年第8期880-884,共5页
将无定形硼粉于流动氨气(50 mL/min)和不同氧气流量(10、15、20、40 mL/min)的混合气氛下高温(1300℃)处理后,在不锈钢基片上收集到白色棉花状产物。研究结果表明,微量的氧气可将硼粉氧化成气态的B2O2中间体,为BN纳米管的生长提供活性... 将无定形硼粉于流动氨气(50 mL/min)和不同氧气流量(10、15、20、40 mL/min)的混合气氛下高温(1300℃)处理后,在不锈钢基片上收集到白色棉花状产物。研究结果表明,微量的氧气可将硼粉氧化成气态的B2O2中间体,为BN纳米管的生长提供活性较高的硼源。当氧气流量适中时,所得纳米管的平均直径为80 nm,长度可达几百微米。氧气流量对BN纳米管的直径和产量影响较大,纳米管直径随着氧气流量的增大而增大,产量则出现先升高后降低的趋势。氮化硼纳米管的生长机理属于气–液–固模型。 展开更多
关键词 氮化硼纳米管 氧气辅助法 气–液–固生长机理
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Growth of High Magnetic a-Fe2O3 and Fe3O4 Nanowires via an Oxide Assisted Vapor-Solid Process
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作者 章明 许乃锋 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2011年第1期109-114,I0004,共7页
We describes a controllable synthesis procedure for growing a-Ee2O3 and Ee3O4 nanowires. High magnetic hematite a-Fe2O3 nanowires are successfully grown on Fe0.5Ni0.5 alloy substrates via an oxide assisted vapor-solid... We describes a controllable synthesis procedure for growing a-Ee2O3 and Ee3O4 nanowires. High magnetic hematite a-Fe2O3 nanowires are successfully grown on Fe0.5Ni0.5 alloy substrates via an oxide assisted vapor-solid process. Experimental results also indicate that previous immersion of the substrates in a solution of oxalic acid causes the grown nanowires to convert gradually into magnetite (Fe3O4) nanowires. Additionally, the saturated state of Fe3O4 nanowires is achieved as the oxalic acid concentration reaches 0.75 mol/L. The average diameter and length of nanowires expands with an increasing operation temperature and the growth density of nanowires accumulates with an increasing gas flux in the vapor-solid process. The growth mechanism of a-Fe2O3 and Fe3O4 nanowires is also discussed. The results demonstrate that the entire synthesis of nanowires can be completed within 2 h. 展开更多
关键词 Oxide assisted vapor-solid process Fe3O4 NWs a-Fe2O3 NWs Oxalic acid Magnetic material
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