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Ruthenium incorporation into molecules and materials: New catalysts and strategies to prepare stable ruthenium-capped olefins.

机译:钌掺入分子和材料:制备稳定的钌封端烯烃的新催化剂和新策略。

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摘要

Strategies such as olefin metathesis were investigated to make stable mixed-valence compounds and materials incorporating metal atoms in polyolefin chains, which are potential precursors in molecular electronics.;New olefin metathesis catalysts, having the general molecular formula (H2IMes)Ru(=CHR)(Cl)2(3-bromopyridine)2 and (H2IMes)Ru(=CHR)(Cl)2(PCy3), where R = Me, Et, and Pr, were prepared. Their kinetic reactivity towards olefins was studied. The PCy3 catalysts initiated faster (6-14 times) than the Grubbs catalyst where R = Ph. The 3-bromopyridine catalysts were similar in reactivity to the Grubbs catalyst, where R = Ph.;Polyacetylene was prepared in powder and film forms from acetylene using ruthenium olefin metathesis. A new material, metathesis-doped polyacetylene (MDPA), with ruthenium incorporation in the polyacetylene, which was soluble in common organic solvents, was prepared. The 3-bromopyridine catalyst where R = Ph effected the polymerization of 1-hexyne and propargyl alcohol.;Two new ring-constrained polyenes, 1,5-dimethylene-1,2,3,4,5,6,7,8-octahydronapthalene and 1,5-dimethylene-decahydronapthalene, and two polyynes, 1,4-pentadiyne and 3,3,6,6-tetramethyl-1,4,7-octatriyne, were investigated as precursors for ring-constrained diruthenium complexes through sequential ene-yne, ring-closing, and stoichiometric olefin metathesis reactions. All compounds failed to give the desired complexes under a variety of conditions.;A new class of ruthenium alkylidene complexes of trimethylphosphine (H 2IMes)Ru(=CHR)(Cl)2(PMe3), where R = Ph and Et, were prepared. They were metathesis-unreactive at room temperature. Thus, a method of stopping the metathesis reactivity was found by the simple addition of PMe3. A new ruthenium alkylidene, namely (PCy3)Ru(=CHC 6H5)(Cl)2(3-bromopyridine)2, was prepared. A new set of Fischer carbenes was prepared, including a tris(trimethylphosphine) complex with molecular formula (PMe3)3Ru(=CHOCH 2CH3)(Cl)2.;Two dienyl ditriflates, 2,3,4,6,7,8-hexahydronapthalene-1,5-ditriflate and 3,4,4a,7,8,8a-hexahydronapthalene-1,5-ditriflate, were prepared, the former in higher yield and greater reproducibility than done before. Their reactivity and potential application as ring-constrained precursors to prepare diruthenium complexes were investigated.
机译:研究了诸如烯烃复分解的策略,以制备稳定的混合价化合物和在聚烯烃链中掺入金属原子的材料,这些化合物是分子电子学中潜在的前体。;新型烯烃复分解催化剂,具有通式(H2IMes)Ru(= CHR)制备了(Cl)2(3-溴吡啶)2和(H2IMes)Ru(= CHR)(Cl)2(PCy3),其中R = Me,Et和Pr。研究了它们对烯烃的动力学反应性。 PCy3催化剂的引发速度比R = Ph的Grubbs催化剂快(6-14倍)。3-溴吡啶催化剂的反应活性与R = Ph的Grubbs催化剂相似;聚乙炔由乙炔制成粉末和薄膜形式使用钌烯烃复分解。制备了一种新材料,易位掺杂的聚乙炔(MDPA),其中钌掺入了聚乙炔中,该乙炔可溶于常见的有机溶剂中。其中R = Ph的3-溴吡啶催化剂实现了1-己炔和炔丙醇的聚合。;两个新的受环约束的多烯,1,5-二亚甲基-1,2,3,4,5,6,7,8-通过顺序研究了八氢萘和1,5-二亚甲基-十氢萘以及两个多炔1,4-戊二炔和3,3,6,6-四甲基-1,4,7-辛三炔作为环受限二钌络合物的前体烯-炔,闭环和化学计量的烯烃复分解反应。在各种条件下,所有化合物均无法提供所需的配合物。制备了新的三甲基膦(H 2IMes)Ru(= CHR)(Cl)2(PMe3)钌烷基亚烷基配合物,其中R = Ph和Et 。它们在室温下不易发生复分解反应。因此,通过简单地添加PMe3发现了一种停止复分解反应性的方法。制备了新的亚烷基钌,即(PCy3)Ru(= CHC 6H5)(Cl)2(3-溴吡啶)2。制备了一组新的费歇尔卡宾烯,包括分子式为(PMe3)3Ru(= CHOCH 2CH3)(Cl)2的三(三甲基膦)配合物;两个二烯基二三氟甲磺酸酯2,3,4,6,7,8-制备了六氢萘-1,5-二甲苯合物和3,4,4a,7,8,8a-六氢萘-1,5-二甲苯合物,前者的收率更高,重现性更高。研究了它们的反应性和作为环受限前体制备钌配合物的潜在应用。

著录项

  • 作者

    Williams, Joseph Ephraim.;

  • 作者单位

    Syracuse University.;

  • 授予单位 Syracuse University.;
  • 学科 Inorganic chemistry.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 220 p.
  • 总页数 220
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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