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Aminotroponate/Aminotroponiminate Zinc Complexes Functionalized Mesoporous Silica Catalysts for Intramolecular Hydroamination of Non-Activated Alkenes with Varied Steric and Electronic Properties

机译:氨基苯甲酸/氨基苯甲酸锌配合物功能化介孔二氧化硅催化剂用于非活化烯烃分子内加氢胺化的立体和电子性质

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Various aminotroponiminate-/aminotroponate-zinc complexes functionalized mesoporous silica catalysts were synthe-sized. These included [N-propyl-2-(propylamino)troponiminato] zinc methyl (ZnDPRT), [N-propyl-2-(phenylamino)troponiminato] zinc methyl (ZnDPHT), and [2-(propylamino) troponato] zinc methyl (ZnPRT) functionalized mesoporous silica catalysts. The catalysts were characterized by various structural (small angle XRD and gas sorption) and compositional (solid-state NMR, XPS, FTIR, and thermogravimetric and elemental analyses) techniques. Their catalytic activities for intramolecular hydroamination of nonactivated alkenes with varied steric and electronic properties were investigated. The catalysts' properties were generally found to differ from one another. This is mainly attributed to (1) fluorosilicate formation during the synthesis of the aminotroponiminate (ATI) ligands on themesoporous silica, (2) the higher reaction effciency of the nucleophilic substitution reaction of aminopropyl-functionalized mesoporous silica (API) with tropolone p-toluenesulfonate forming 2-(propylamino)troponato- [or aminotroponate (ATO) ligand]-functionalized sample (PRT), compared to that of the ATI ligands, where 2-(alkylamino)tropones or 2-(arylamino)tropones are activated with Et3OBF4 forming corresponding vinylgous ethers which then undergo aminolysis with the API precursor, and (3) the different compositional and structural characteristics of the amine/imine (ATI) or amine/carbonyl (ATO) chelation sites. To better understand the catalytic capabilities of the synthesized catalysts, a broader functional group compatibility study was also performed. It was found that decreased bite angles (Thorpe-Ingold effect) and increased electron donation of the p-substituted benzylic side arm of the substrates resulted in slightly increased conversion effciencies in the hydroamination reaction. Overall, the 2,2-diphenyl cyclizing agents formed their corresponding N-containing 5-membered heterocycles at 74-94% conversion in 8 h under re?ux conditions while the 2,2-dimethyl species exhibited 59-81% conversion of 12 h.
机译:合成了各种功能化的介孔二氧化硅催化剂的氨基苯甲酸-氨基苯甲酸-锌。这些化合物包括[N-丙基-2-(丙基氨基)对苯二甲氨基]甲基锌(ZnDPRT),[N-丙基-2-(苯基氨基)对苯二甲氨基]甲基锌(ZnDPHT)和[2-(丙基氨基)对苯二甲酰基]甲基锌( ZnPRT)功能化的介孔二氧化硅催化剂。通过各种结构(小角度XRD和气体吸附)和组成(固态NMR,XPS,FTIR以及热重和元素分析)技术对催化剂进行了表征。研究了它们对具有不同空间和电子性质的未活化烯烃的分子内加氢胺化的催化活性。通常发现催化剂的性质彼此不同。这主要归因于(1)在介孔二氧化硅上合成氨基对苯二甲酸酯(ATI)配体时形成氟硅酸盐;(2)氨基丙基官能化介孔二氧化硅(API)与对苯二酚对甲苯酚的亲核取代反应的反应效率更高与ATI配体相比,形成了2-(丙基氨基)肌钙蛋白-[或氨基肌钙蛋白(ATO)配体]-官能化的样品(PRT),其中2-(烷基氨基)肌醇或2-(芳基氨基)肌醇被Et3OBF4活化相应的乙烯基醚,然后与API前体进行氨解,以及(3)胺/亚胺(ATI)或胺/羰基(ATO)螯合位点的不同组成和结构特征。为了更好地理解合成催化剂的催化能力,还进行了更广泛的官能团相容性研究。发现减小的咬合角(索普-英戈尔德效应)和底物的对位取代的苄基侧臂的电子给体增加导致加氢胺化反应中的转化效率略微提高。总体而言,2,2-二苯基环化剂在回流条件下在8小时内以74-94%的转化率形成了其相应的含N 5元杂环,而2,2-二甲基环化剂的转化率为12-的59-81% H。

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