首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Using boryl-substitution and improved Suzuki-Miyaura cross-coupling to access new phosphorescent tellurophenes
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Using boryl-substitution and improved Suzuki-Miyaura cross-coupling to access new phosphorescent tellurophenes

机译:使用Boryl替代和改进的Suzuki-Miyaura交叉耦合进入新的磷光酿酒烯

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摘要

A new di(isopropoxy)boryl -B((OPr)-Pr-i)(2) tellurophene precursor is described, from which several previously inaccessible phosphorescent borylated tellurophenes are formed via exchange of the -(OPr)-Pr-i groups. One such tellurophene Mes((PrO)-Pr-i)B-Te-6-B((OPr)-Pr-i)Mes, bearing a sterically encumbered mesityl (Mes) substituent at each boron center, exhibits bright yellow-orange phosphorescence in the solid state at room temperature and in the presence of the known quencher O-2. Furthermore, Suzuki-Miyaura cross-coupling between the newly prepared borylated tellurophenes and the test substrate 2-bromothiophene was examined with the pre-catalyst Cl(XPhos)Pd(aminobiphenyl). While more electron deficient boryl groups such as catecholatoboryl (-Bcat) yield significant protodeboronation in place of productive C-C bond formation, efficient formation of the desired thiophene-capped tellurophene thienyl-Te-6-thienyl was noted from tellurophenes bearing the readily accessible pinacolatoboryl (-Bpin) and 1,8-naphthalenediaminatoboryl (-Bdan) functional groups. These findings open the door for the efficient synthesis of aryl tellurophenes and polytellurophenes via the ubiquitous Suzuki-Miyaura coupling of borylated tellurophenes, which was previously hampered by protodeboronation.
机译:描述了一种新的DI(异丙氧基)β((OPR)-PR-I)(2)碲化烯前体,通过交换 - (OPR)-1-I基团形成几个先前难以接近的磷光硼酸酚蛋白。一种这样的碲化丁烯MES((PRO)-PR-I)B-TE-6-B((OPR)-PR-I)MES,在每个硼中心携带空间留下的叶片(MES)取代基,呈现亮黄橙色室温下固态的磷光和已知的猝灭剂O-2存在。此外,用预催化剂Cl(XPHOS)Pd(氨基苯苯基)检查新制备的硼酸化碲化蛋白和试验基质2-溴噻吩之间的铃木宫颈交叉偶联。虽然诸如儿茶杆菌(-BCAT)的更多电子缺乏型硼糖基团来产生显着的产物萎缩代替生产CC键的形成,但从核心蛋白中注意到所需的噻吩封端的蛋白质噻吩基-6-噻吩基的有效形成,其中含有易于接近的Pinacolatoboryl( -bpin)和1,8-萘二氨基替昔萝卜(-bdan)官能团。这些发现通过促进的碲化植物的普发化碲化植物的普遍舒适的蛋白酶偶联,开放了高效合成芳基碲烯烃和多苯乙烯烯烃的门。

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