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Studies toward homogeneous dinitrogen reduction and ammonia oxidation by bis(imino)pyridine molybdenum complexes and group 4 metallocenes.

机译:对双(亚氨基)吡啶钼配合物和第4组茂金属进行均相二氮还原和氨氧化的研究。

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摘要

The zirconocene dinitrogen complex, (eta5-C5Me 4H)2Zr]2(micro2, eta2,eta 2-N2) was synthesized by photochemical reductive elimination from the corresponding zirconium bis(aryl) or aryl hydride complexes, providing a high yielding, alkali metal-free route to strongly activated early metal N2 complexes. Photolysis of zirconium bis(aryl) complex (eta 5-C5Me4H)2Zr(Tol)2 leads to the reductive coupling of the arenes to form presumed eta2 bound intermediate arene complexes. With sufficient mixing in the presence of dinitrogen, these complexes undergo arene displacement to form activated dinitrogen complex (eta5-C5Me4H) 2Zr]2(micro2, eta2,eta 2-N2).;The bis(imino)pyridine molybdenum dinitrogen complex [{( iPrBPDI)Mo(N2)}2(micro2 , eta1, eta1-N2)] has been prepared and its reactivity examined. Exposure of the molybdenum dinitrogen complex to ammonia or hydrazine resulted in the formation of imido (micro-NH) ligands with concomitant reduction of one of the imines of the supporting chelate to form [(iPrBPIBn)Mo(=NArDipp)] 2(micro2,eta1,eta1-NH) 2. Experiments utilizing n-propyl amine yielded isolable intermediates in the ligand modification process, leading to the identification of a highly reactive molybdenum hydride complex (i PrBPIABn)Mo(H)(=NC3H7). Upon additional stirring, (iPrBPIABn)Mo(H)(=NC3H7) further reacts to form (iPrBPIBn)Mo(=NArDipp)(=NC3H 7), giving insight into the mechanism of ammonia oxidation and the role of the redox and chemically active ligand.;A bis(imino)pyridine molybdenum eta6-benzene complex (iPrPDI)Mo(eta6-C6H6) has been synthesized and provided an accessible route into studying the chemistry of molybdenum amides, imides and nitrides. The large range of oxidation states available to the [(iPrPDI)Mo] system is possible through a high degree of metal-ligand cooperativity made available by the bis(imino)pyridine ligand.;A bis(imino)pyridine molybdenum complex (iPrPDI)Mo(=NTol) 2 was synthesized and used as a platform to quantify nitrogen-hydrogen (N-H) bond dissociation free energies (BDFE's). Utilizing the electrochemical and acidity studies the BDFE of the N-H bond in (iPrPDI)Mo(-N(H)Tol)(=NTol) was found to be between 75-78 kcal/mol. The anionic form of the aforementioned complex, [K][(iPrPDI)Mo(-N(H)Tol)(=NTol)] was also synthesized and examined. The N-H BDFE of this anionic complex was seen to fall within the range of 69-72 kcal/mol. While the redox-active ligand employed in our studies allowed for the isolation and study of intermediate complexes, the high reduction potentials and amplified basicity did not translate into a large difference in BDFEs between these complexes.
机译:锆茂二氮配合物(eta5-C5Me 4H)2Zr] 2(micro2,eta2,eta 2-N2)是通过光化学还原消除法从相应的锆双(芳基)或芳基氢化物配合物中合成的,从而提供高收率的碱金属到强烈活化的早期金属N2络合物的自由途径。锆双(芳基)配合物(η5-C5Me4H)2Zr(Tol)2的光解作用导致芳烃的还原偶联,形成假定的eta2键合的中间芳烃配合物。在二氮存在下充分混合后,这些络合物发生芳烃置换反应,形成活化的二氮络合物(eta5-C5Me4H)2Zr] 2(micro2,eta2,eta 2-N2)。;双(亚氨基)吡啶钼二氮络合物[{制备了(iPrBPDI)Mo(N2)} 2(micro2,eta1,eta1-N2)]并检查了其反应性。钼二氮配合物暴露于氨或肼会导致亚氨基(micro-NH)配体的形成,伴随而来的是螯合螯合物的亚胺之一还原为[(iPrBPIBn)Mo(= NArDipp)] 2(micro2, eta1,eta1-NH)2.利用正丙胺进行的实验在配体修饰过程中产生了可分离的中间体,从而鉴定出高反应性的氢化钼配合物(i PrBPIABn)Mo(H)(= NC3H7)。在额外搅拌下,(iPrBPIABn)Mo(H)(= NC3H7)进一步反应形成(iPrBPIBn)Mo(= NArDipp)(= NC3H 7),从而深入了解氨氧化的机理以及氧化还原和化学活性的作用已经合成了双(亚氨基)吡啶钼eta6-苯配合物(iPrPDI)Mo(eta6-C6H6),并为研究钼酰胺,酰亚胺和氮化物的化学性质提供了一条可行的途径。 [(iPrPDI)Mo]系统可利用的大范围氧化态可通过双(亚氨基)吡啶配体提供的高度的金属-配体协同作用来实现。双(亚氨基)吡啶钼配合物(iPrPDI)合成Mo(= NTol)2并用作量化氮氢(NH)键解离自由能(BDFE's)的平台。利用电化学和酸度研究,发现(iPrPDI)Mo(-N(H)Tol)(= NTol)中N-H键的BDFE为75-78 kcal / mol。还合成并检查了上述配合物的阴离子形式[K] [(iPrPDI)Mo(-N(H)Tol)(= NTol)]。看到该阴离子络合物的N-H BDFE落在69-72kcal / mol的范围内。尽管我们研究中使用的氧化还原活性配体允许分离和研究中间配合物,但高还原电位和放大的碱度并未转化为这些配合物之间的BDFE差异很大。

著录项

  • 作者

    Margulieux, Grant William.;

  • 作者单位

    Princeton University.;

  • 授予单位 Princeton University.;
  • 学科 Organic chemistry.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 299 p.
  • 总页数 299
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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