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iodonium

网络  碘鎓; 碘翁

化学

双语例句

  • In this paper the advances of the chemistry including the syntheses and the reactions of hypervalent iodonium ylides in the latest ten years has been reviewed.
    本文对近十年来碘叶立德化学包括碘叶立德的合成和反应的最新进展进行综述,并展望前景。
  • Specific surface area and iodonium adsorbance of active carbon increase with alkali/ carbon increasing, but high alkali/ carbon leads to mesopore proportion increasing;
    活性炭比表面积及碘吸附值随碱/炭(即碱的添加量)的增加而增加,但高的碱/炭将增大中孔比例;
  • Dye Recycled Photosensitization System of Eosin Ethyl Ester Iodonium Salt
    乙基曙红碘鎓盐的染料再生循环光敏体系
  • The paper reviews the development of transition metal-catalyzed reactions with hyperva-lent iodonium salts according to the types of the reactions.
    根据不同反应类型对过渡金属催化下有机高价碘盐在有机合成中的应用研究进行总结。
  • Development of UV-Curable epoxy-acrylate photosensitive adhesive Initiated by Iodonium Salt
    碘鎓盐引发的环氧&丙烯酸酯复合光敏胶的研制
  • Fourth, a three component initiating system, iodonium/ ketone/ tertiary amine, was attempted and the influence to surface oxygen inhibition was discussed.
    第四,尝试将碘鎓盐、硫杂蒽酮及三级胺组成三元复合引发体系,讨论了其对表面氧阻聚抑制作用。
  • The AH ⅰ ammes, such as aliphatic and aromatic ammes, can only absorb light below 300 400 urn by themselves, but readily interact with iodonium salts to form a charge transfer complex ( CTC), which extends the absorption largely into the visible range.
    AH-Ⅰ类胺,如脂肪族胶和芳香族胺的光吸收在300&400no以下,很容易和碘盐作用形成电荷转移络合物(CTC),使光吸收显著移至可见光区。
  • In order to overcome this limitation, a number of novel iodonium salts and sulfonium salts were prepared and their photoactivity for cationic polymerization were investigated by gel time studies.
    为解决此问题,本文合成了一些新的碘鎓盐和硫鎓盐,并用凝胶时间方法考察了它们的光引发效率。
  • STUDY ON CYCLIC IODONIUM SALT PHOTOINITIATORS Identification of Iodine in Salt
    环状碘鎓盐光引发体系的研究
  • The Pd(ⅱ)/ Cu(ⅰ) co catalyzed cross coupling reaction of propargyl alcohol with hypervalent iodonium salts to produce the 3 substituted propargyl alcohols in good to excellent yields under the mild conditions with high regioselectivity is discussed.
    有机高价碘在钯(Ⅱ)/铜(Ⅰ)共催化作用下与炔丙醇发生交叉偶联反应生成3取代炔丙醇。该反应不仅条件温和,产率很高,而且具有良好的区域选择性。