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微凝胶的英文

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"微凝胶"怎么读用"微凝胶"造句

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  • microgel

例句与用法

  • The micro - gels powder exhibited excellent redispersability in water
    同时发现制备的微凝胶粉末在水中具有良好的再分散性。
  • Therefore , polymeric microgels are ideal templates for preparing nano - structured spherical organic - inorganic composites
    因此,高分子微凝胶是一类理想的具有纳米结构的有机-无机复合材料制备模板。
  • Moreover , template can be pre - designed according to the size and shape of objective materials . microgels are cross - linked latex particles with narrow size distribution and the inherent steric stability
    微凝胶是一种交联型的胶乳粒子,它具有较窄的尺寸分布和空间位阻作用。
  • The influence of emulsifiers on the stability of the micro - gels and the influence of the adding methods of monomers on crosslinking degree and distribution of hydroxyl group in micro - gel particles were also discussed
    讨论了乳化剂对微凝胶稳定性的影响及操作方法对微凝胶交联度、羟基分布的影响。
  • The optimum preparation conditions and the predicted quantitative equation have been obtained , which can be used to prepare starch microgel with smaller size and narrower size distribution
    进一步通过均匀设计逐步回归法得到了制备平均粒径较小、粒度分布窄的淀粉微凝胶的优化工艺条件和预测定量方程。
  • Compared with other template , especially organic templates , the types of functional groups , the size , the composition , and even cross - linking density of microgels are easily controlled
    与其他有机模板相比较,微凝胶的组成成分,特别是其中所含官能团的类型、微凝胶大小、交联密度等都可以通过选择单体、调节反应条件等加以控制。
  • In addition , the preparation of aqueous starch microgel with aqueous solution as reaction environment has been studied . the results show that the important factors affecting the formation of starch microgel are surfactant content , concentration of starch and conversion efficiency of cross - linking reaction
    另外,本论文研究了用水溶液作为反应环境制备亲水性淀粉微凝胶,研究得到表面活性剂含量、淀粉液浓度及交联反应的转化率是影响淀粉微凝胶形成的主要因素。
  • They are poly ( sodium methacrylate ) / cds ( pmaana / cds ) , pmaana / pbs , poly ( sodium acrylate ) / la ( oh ) 3 ( paana / la ( oh ) 3 ) and paana / pbs , respectively . ( 1 ) preparation and properties of pmaana / cds composite particles pmaana microgels containing cd2 + were prepared by inverse emulsion polymerization method . then , h2s gas was introduced slowly into the system , and the metal ions were deposited within the microgels as cds
    ( 1 ) pmaana cds复合微球的制备与性能研究首先,利用反相乳液聚合的方法,制备得到了包埋cd ~ ( 2 + )的pmaana微凝胶,然后通过外源沉积(即向反应体系中缓慢通人硫化氢气体) ,得到了pmaana cds有机-无机复合材料。
  • Poly ( methacrylic acid ) ( maa ) and poly ( acrylic acid ) ( aa ) microgels have been prepared as templates by employing inverse emulsion polymerization techniques . four types of spherical organic - inorganic nano - composites have been prepared by introduction of precipitation agent into the pmaa / paa microgels containing appropriate rate metal ions
    本课题开展了两个模板体系的研究,即分别以丙烯酸( aa )和甲基丙烯酸( maa )为聚合单体,利用反相乳液聚合方法合成了几种包埋有不同金属离子的高分子微凝胶
  • The microgels of close monodispersity with different volume and cross - linking density can be prepared by using an inverse emulsion polymerization method . both artificial and natural materials , including zeolites , membranes , vesicles , liquid crystal , microemulsion , micelles , biopolymers , etc . , have been used as template . the three - dimentional network structure and spherical morphology of polymeric microgels may guarantee the homogeneous of the structure of the composite , the size and the morphology of the various organic - inorganic composites with unusual structures
    在反相乳液聚合条件下,通过控制反应条件可以得到体积不同、交联度不同的近乎单分散的微凝胶,如同分子筛、单(多)分子膜、囊泡、液晶、微乳液、胶束、生物大分子等可作为微纳米无机材料合成模板一样,高分子微凝胶所特有的三维网络结构和球形形貌有可能对在其中进行的无机结晶或沉积反应施加限域和导向作用,从而控制所生成无机材料的形貌和大小,得到各种具有特异结构的无机-有机复合材料。
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