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末端叔丁基化聚烯烃的化学行为。

The chemical behavior of terminally tert-butylated polyolefins.

作者信息

Klein Dagmar, Hopf Henning, Jones Peter G, Dix Ina, Hänel Ralf

机构信息

Institut für Organische Chemie, Technische Universität Braunschweig, Hagenring 30, D-38106 Braunschweig, Germany, ; Current address: Mitsubishi Polyester Film GmbH, Kasteler Str. 45, 65203 Wiesbaden, Germany.

Institut für Organische Chemie, Technische Universität Braunschweig, Hagenring 30, D-38106 Braunschweig, Germany.

出版信息

Beilstein J Org Chem. 2015 Jul 24;11:1246-58. doi: 10.3762/bjoc.11.139. eCollection 2015.

Abstract

The chemical behavior of various oligoenes 2 has been studied. The catalytic hydrogenation of diene 3 yielded monoene 4. Triene 7 was hydrogenated to diene 8, monoene 9 and saturated hydrocarbon 10. Bromine addition to 3 and 7 yielded the dibromides 17 and 18, respectively, i.e., the oligoene system has been attacked at its terminal olefinic carbon atoms. Analogously, the higher vinylogs 19 and 20 yielded the 1,8- and 1,10-bromine adduts 23 and 24, respectively, when less than 1 equivalent of bromine was employed. Treatment of tetraene 19 with excess bromine provided tetrabromide 25. In epoxidation reactions, both with meta-chloroperbenzoic acid (MCPBA) and dimethyldioxirane (DMDO) two model oligoenes were studied: triene 7 and tetraene 19. Whereas 7 furnished the rearrangement product 31 with MCPBA, it yielded the symmetrical epoxide 32 with DMDO. Analogously, 19 was converted to mono-epoxide 33 with MCPBA and to 34 with DMDO. Diels-Alder addition of 7 with N-phenyltriazolinedione (PTAD) did not take place. Extension of the conjugated π-system to the next higher vinylog, 19, caused NPTD-addition to the symmetrical adduct 37 in good yield. Comparable results were observed on adding NPTD (equivalent amount) to pentaene 20 and hexaene 21. Using 36 in excess provided the 2:1-adduct 40 from 21 and led to a complex mixture of adducts from heptaene 22. With tetracyanoethylene (TCNE) as the dienophile, tetraolefin 19 yielded the symmetrical adduct 43, although the reaction temperature had to be increased. Pentaene 20 and hexaene 21 led to corresponding results, adducts 44 and 45 being produced in acceptable yields. With nonaene 42 and TCNE the 2:1-adduct 48 was generated according to its spectroscopic data. Exploratory photochemical studies were carried out with tetraene 19 as the model compound. On irradiation this reacted with oxygen to the stable endo-peroxide 52.

摘要

已对各种低聚烯烃2的化学行为进行了研究。二烯烃3的催化氢化生成单烯烃4。三烯烃7被氢化为二烯烃8、单烯烃9和饱和烃10。向3和7中添加溴分别生成二溴化物17和18,即低聚烯烃体系在其末端烯碳上受到了攻击。类似地,当使用少于1当量的溴时,较高的连烯19和20分别生成1,8 - 和1,10 - 溴加成物23和24。用过量溴处理四烯烃19得到四溴化物25。在环氧化反应中,使用间氯过苯甲酸(MCPBA)和二甲基二氧杂环丙烷(DMDO)对两种模型低聚烯烃进行了研究:三烯烃7和四烯烃19。7与MCPBA反应生成重排产物31,而与DMDO反应生成对称环氧化物32。类似地,19与MCPBA反应转化为单环氧化物33,与DMDO反应转化为34。7与N - 苯基三唑啉二酮(PTAD)未发生狄尔斯 - 阿尔德加成反应。将共轭π体系扩展到下一个更高的连烯19时,NPTD以良好的产率加成到对称加合物37上。向戊烯20和己烯21中添加NPTD(等量)时观察到了类似的结果。使用过量的36时,21生成了2:1加合物40,并导致庚烯22生成了复杂的加合物混合物。以四氰基乙烯(TCNE)作为亲双烯体时,四烯烃19生成了对称加合物43,不过反应温度必须升高。戊烯20和己烯21得到了相应的结果,加合物44和45以可接受的产率生成。对于壬烯42和TCNE,根据其光谱数据生成了2:1加合物48。以四烯烃19作为模型化合物进行了探索性光化学研究。在光照下,它与氧气反应生成稳定的内过氧化物52。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f0f/4578339/828bbf80e55b/Beilstein_J_Org_Chem-11-1246-g008.jpg

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