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单氢硅氧烷对降冰片二烯-2,5的选择性硅氢加成反应。

The selective hydrosilylation of norbornadiene-2,5 by monohydrosiloxanes.

作者信息

Guseva Marina A, Alentiev Dmitry A, Bermesheva Evgeniya V, Zamilatskov Ilya A, Bermeshev Maxim V

机构信息

A. V. Topchiev Institute of Petrochemical Synthesis of Russian Academy of Sciences 29 Leninsky Prospekt 119991 Moscow Russia

I. M. Sechenov First Moscow State Medical University 8 Bld. 2 Trubetskaya Str. 119991 Moscow Russia.

出版信息

RSC Adv. 2019 Oct 16;9(57):33029-33037. doi: 10.1039/c9ra06784a. eCollection 2019 Oct 15.

Abstract

A simple one-step approach for the selective synthesis of -norbornenes with organosilicon substituents is suggested through the direct hydrosilylation of norbornadiene-2,5 with chlorine-free silanes. Using the example of norbornadiene-2,5 hydrosilylation with pentamethyldisiloxane and 1,1,1,3,5,5,5-heptamethyltrisiloxane, the possibility of obtaining -isomers of norbornenes with 100 -/-selectivity is shown. The investigation of Pt-, Rh-, and Pd-complexes in combination with various ligands as catalysts was performed. The hydrosilylation of norbornadiene-2,5 in the presence of Pt- or Rh-catalysts was not selective and led to a mixture consisting of three isomers (-/-norbornenes and substituted nortricyclane). In the case of the Pd-salt/ligand catalytic system, the formation of an -isomer was not observed at all and only two isomers were formed (-norbornene and nortricyclane). The selectivity of -norbornene/nortricyclane formation strongly depended on the nature of the ligand in the Pd-catalyst. The best selectivity was revealed when -MOP was the ligand, while the highest catalytic activity was reached with a dioxalane-containing ligand.

摘要

通过降冰片二烯-2,5与无氯硅烷的直接硅氢化反应,提出了一种选择性合成带有有机硅取代基的降冰片烯的简单一步法。以降冰片二烯-2,5与五甲基二硅氧烷和1,1,1,3,5,5,5-七甲基三硅氧烷的硅氢化反应为例,展示了以100%的α/γ选择性获得降冰片烯α-异构体的可能性。对铂、铑和钯配合物与各种配体组合作为催化剂进行了研究。在铂或铑催化剂存在下,降冰片二烯-2,5的硅氢化反应没有选择性,生成了由三种异构体(α/γ-降冰片烯和取代的降冰片烷)组成的混合物。在钯盐/配体催化体系的情况下,根本没有观察到α-异构体的形成,只生成了两种异构体(γ-降冰片烯和降冰片烷)。γ-降冰片烯/降冰片烷形成的选择性强烈取决于钯催化剂中配体的性质。当使用α-MOP作为配体时,显示出最佳选择性,而使用含二氧杂环戊烷的配体时达到最高催化活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f12f/9073203/770127f457cf/c9ra06784a-s1.jpg

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