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微粒制备
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  particles preparation
     Recent Progress in Nano iron Particles Preparation
     纳米铁微粒制备新进展
短句来源
     Nano iron particles are important nanometer metal materials Recent progress in research for nano iron particles preparation is reviewed,including chemical methods and physical methods
     纳米铁微粒是重要的纳米金属材料。 本文综述了纳米铁微粒制备方法 (包括物理方法和化学方法 )的最新进展。
短句来源
  particulate preparation
     Application of supercritical fluids technique in extraction and purification, solvent substitute and material processing, particulate preparation, analyzing and using etc. were introduced.
     介绍了超临界流体技术在萃取和提纯、溶剂替代、材料加工、微粒制备以及分析应用等方面的最新发展。
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  “微粒制备”译为未确定词的双语例句
     Preparation and Basic Properties of Ultrafine γ-Fe_2O_3 Particles
     γ-Fe_2O_3超细微粒制备及基本特征
短句来源
     Studies on Gas Sensors of Fe_2O_3——I. Preparation and Gas Sensitive Properties of γ-Fe_2O_3 Superfine Powder
     氧化铁气体传感器研究I.r-Fe_2O_3微粒制备及其气敏特性
短句来源
     Si_3N_4 particles were mixed in Wattselectroplating solution to get Ni-Si_3N_4 composite coatings. The friction and wearbehavior of Ni-Si_3N_4 coatings were investigated.
     本文采用普通瓦特镀液添加Si_3N_4微粒制备出Ni-Si_3N_4复合镀层,并探讨了其摩擦磨损性能。
短句来源
     STUDY ON H_2O/Span85-Tween60/CYCLOHEXANE MICROEMULSIONS AND PREPARATION OF COMPOSITE NANOPARTICLES
     水/Span85-Tween60/环己烷微乳液及纳米复合微粒制备
短句来源
     The annealing temperature during preparation, the content of doped α-Fe_(2)O_(3), nano particles and the particle size of α-Fe_(2)O_(3) nano particles had effects on gaining the Raman spectroscopy of α-Fe_(2)O_(3) nano particles.
     复合微粒制备过程中的热处理温度、α-Fe_2O_3纳米粒子的数量及粒径,对获得α-Fe_2O_3纳米粒子的拉曼光谱都有一定程度的影响。
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  相似匹配句对
     The preparation technology of nano-particles
     纳米微粒制备技术
短句来源
     Preparation of Polydivinylbenzene Particles by Precipitation Polymerization
     沉淀聚合制备聚二乙烯基苯微粒
短句来源
     Preparation of furfuryl amine
     糠胺的制备
短句来源
     Preparation of 2,3-Butanedione(AC 2)
     丁二酮的制备
短句来源
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  microparticle formation
Effect of trace elements on carbon microparticle formation
      
affect the mechanism of carbon microparticle formation.
      
Microparticle formation was determined as the number of microparticles per 10,OOO intact platelets using flow cytometry, as described below.
      
Microparticle formation after 1 minute and 5 minutes is expressed as the number of microparticles per 10,000 intact platelets.
      
Platelet microparticle formation in response to the consumption of cocoa, water, or a caffeine beverage.
      
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  particulate preparation
Adenylate cyclase in this particulate preparation retained high sensitivity to ACTH and is also stimulated by 5'-guanylyl-imidodiphosphate [Gpp(NH)p].
      
Depolarization increases inositolphosphate production in a particulate preparation from rat brain
      
A particulate preparation of rat brain was introduced to rule out transmitter activated mechanisms and to allow free access for drugs of high molecular weights.
      
A particulate preparation from developing cotyledons of Phaseolus vulgaris L.
      
Electronmicroscopic examination of the enzyme-containing particulate preparation from Berberis wilsoniae var.
      
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In this paper the preparation and gas sensitive properties of γ-Fe_2O_2 are studied on thebasis of experiments.The gas sensing mechanism of this material is discussed.

本文初步探讨了一种用作气敏材料的r-Fe_2O_3微粒的制备方法及其气敏性能,并对r-Fe_2O_3的气敏机理作了扼要的讨论.

A new method of metal ultrafine particle producing has advanced. The equipment for the method was introduced and its basic physical principle was also explained. The Ag, Au ultrafine particles, produced by the methode, were observed and analyzied with TEM and XRD, which shows that the . nanometer scale of spherical metal ultrafine particles can be produced by the methode.

研究了一种制备金属超微粒的新物理方法——溅射法.介绍了该方法的装置并阐明了其基本物理原理.通过Ag、Au超微粒的制备及其透射电子显微镜和X射线衍射仪观察与分析表明,用此法可制备纳米量级的球形金属结晶超徽粒.

In this paper 7 factorsand 15 levels of conditions for aclacinom-ycin polyisobutylcyanoacrylate nanopa-rticles preparation were selected by unif-orm design and computer. An optimalcondition was established Under thisoptimal condition, a latex yellow colloi-dal solution can be prepared, in whichdrug loading is 47.28%, drug embeddingration is 94.57%, Zeta potential is -14.08mv and average diameter of nanoparticlesis 84±31nm.

采用均匀设计法与微机技术优选出阿克拉霉素聚氨基丙烯酸异丁脂毫微粒制备条件,按此条件制备的产品外观为乳黄色胶体溶液,粒径在84±31nm范围,包封率为94. 57%,载药量达47.28%,Zeta电位为-14.08mv,达到产品设计要求。

 
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