fsn
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An Electrochemical and STM Study of Fluorosurfactant FSN Self-assembly on Gold Single Crystal Surfaces
氟表面活性剂FSN在金单晶表面自组装的电化学和扫描隧道显微术研究
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Effecting factors of FSN , particle formation mechanism in flames and method for preparing hydrophobic silica nanoparticles are studied .
对燃烧合成的影响因素、颗粒的形成机理以及疏水性颗粒的制备等方面进行了研究。
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Flame synthesis nanoparticle ( FSN ) is the main method to manufacture more than 90 % of nano-scale commodities in industry .
燃烧法是工业上大规模合成粉体的主要方法,生产了超过90%的纳米级商品。
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FSN has many advantages . Nanoparticles synthesized by FSN possess the characters of small particle size , low size distribution , and high chemical activity and so on .
燃烧法合成纳米颗粒具有诸多优势,该法制备的纳米颗粒具有粒径小、分布窄、化学活性高等特点。
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Conclusions : The data suggest that FSN has inhibitory effects on symptom and condition of experimental RA , which is better than TWP as a whole .
结论:FSN具有改善实验性RA症状及病情的作用,总体疗效优于TWP;
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The activator FSN can change Zeta-potential of magnesite and dolomite and enlarge the difference of flotability between the two minerals .
FSN可改变菱镁矿、白云石的Zeta电位并使两者之间可浮性差异明显提高。
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FSN could promote the apoptosis via caspase-dependent , AIF pathway and curb the excessive proliferation of synovium by regulating ROS generation in vivo to affect synovial mitochondrial function , the Th cell differentiation to play its therapeutic effect . 3 .
FSN通过调节体内ROS的生成影响滑膜线粒体功能及Th细胞的分化,促进经caspase依赖性途径、AIF途径的细胞凋亡,抑制滑膜的过度增殖,从而发挥其治疗作用。
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According to the comparison between the GFS and the FSN , which is a non-linear optimization procedure based on the Nyquist stability criterion , the focus of the analysis is put onto the instability effects caused by the milling force level and the radial cutting constants .
在考虑了主轴陀螺效应的基础上,着重分析了切向铣削力参数和径向铣削力参数对铣削系统稳定性的影响,比较了广义傅里叶级数法与基于奈奎斯特稳定性判据的非线性优化法的结果。
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The fluorosurfactant ( FSN ) acrylate ester monomer was prepared by reacting of FSN with acryloyl chloride ( AC ) . The effects of reactant proportion and reaction time on the products yield and products purity were investigated , reaction condition were optimized .
以含氟表面活性剂FSN与丙烯酰氯(AC)反应制备了FSN丙烯酸酯(AFSN),考察了物料配比和反应时间对产物收率和纯度的影响,优化了反应条件。