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硅氮烷:综述其合成、结构、反应性及应用。

Silatranes: a review on their synthesis, structure, reactivity and applications.

机构信息

Centre of Advanced Studies and Department of Chemistry, Panjab University, Chandigarh-160 014, India.

出版信息

Chem Soc Rev. 2011 Mar;40(3):1791-840. doi: 10.1039/b925899j. Epub 2010 Dec 20.

Abstract

This critical review summarizes progress of the rapidly developing and very active field of silatrane chemistry. The first part of the review deals with general synthetic approaches used to synthesize different silatranes. The most interesting feature of silatranes, i.e., variation of Si-N bond length on the basis of the axial substituent of Si, and other structural features, are described in the second part with special emphasis on crystallographic and theoretical studies. It is followed by a discussion on the reactivity of various silatranes. Silatranes have now gained acceptance for a wide variety of applications which are summarized in the last section of review. Some of them have extensive interest due to their medical use to heal wounds or stimulate hair-growth (pilotropic activity), biological properties, pharmacological properties e.g. antitumor, anticancer, antibacterial, anti-inflammatory, fungicidal activity, stimulating effect in animal production and seed germination effects. The review focuses on the extended potential of silatranes in sol-gel processes, mesoporous zeotypes, atomic force microscopy, commercial products such as adhesion promoters, polymer formation and rubber compositions. This critical review will be helpful for general researchers, experts, advanced undergraduates and newcomers working on silatrane chemistry as this review presents greater emphasis on synthesis and characterization, structural properties, reactivity and applications of silatranes in the field of biology, material science, sol-gel chemistry, pharmaceutics, agriculture and medicine (311 references).

摘要

这篇评论综述总结了硅氮烷化学这一快速发展且非常活跃的领域的进展。评论的第一部分涉及用于合成不同硅氮烷的一般合成方法。硅氮烷最有趣的特征,即在 Si 的轴向取代基的基础上 Si-N 键长度的变化,以及其他结构特征,在第二部分进行了描述,特别强调了晶体学和理论研究。接着讨论了各种硅氮烷的反应性。硅氮烷现在已经广泛应用于各种领域,这在评论的最后一部分进行了总结。由于它们在医学上的应用,例如治愈伤口或刺激头发生长(促生作用)、生物特性、药理学特性(如抗肿瘤、抗癌、抗菌、抗炎、杀菌活性、在动物生产中的刺激作用和种子发芽效应),它们中的一些具有广泛的兴趣。评论重点介绍了硅氮烷在溶胶-凝胶过程、中孔沸石、原子力显微镜、商业产品(如附着力促进剂)、聚合物形成和橡胶组合物中的扩展潜力。这篇评论综述将有助于一般研究人员、专家、高级本科生和从事硅氮烷化学工作的新手,因为这篇综述更加强调了硅氮烷在生物学、材料科学、溶胶-凝胶化学、药剂学、农业和医学领域的合成与表征、结构特性、反应性和应用(311 篇参考文献)。

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