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Rational synthesis and properties of new long-chain linear oligomeric germanium compounds.

机译:新型长链线性低聚锗化合物的合理合成和性质。

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摘要

Germanium compounds with single germanium-germanium bonds contain interesting optical and electronic properties such as absorption within the UV/visible range and conductivity, which can also be seen in other heavier Group 14 oligomers. In comparison to the tin and silicon analogues, the reported methods for synthesizing the germanium compounds are minimal. The longest linear oligogermane completely characterized, including its structure, is the perphenylated pentagermane, Ge5Ph12. Due to their inherent properties, it is of interest to synthesize longer, linear oligomeric germanium compounds. It is proposed that if a long enough chain of germanium atoms is obtained, properties characteristic of polygermane species may also be achieved. Protection/deprotection strategies, using a masked Ge -- H bond, were initially attempted, however only a linear pentagermane could be obtain. All products were also liquid, preventing complete characterization using X-ray crystallography.;After synthetic efforts were shifted away from the protection/deprotection strategies, a successful strategy was achieved starting with a cyclic germanium species. The hexagermane Pri3Ge(GePh 2)4GePri3 was synthesized in three steps from cyclic (GePh2)4 within reasonable overall yield. The hexagermane exhibits a lambdamax of 310 nm in its UV/visible spectrum, which is more red--shifted than any other discrete oligogermanes synthesized with six or less consecutive germanium atoms, and the DPV contained 5 consecutive, irreversible oxidation waves, the first of which was observed at 1080 mV. The hexagermane is the first discrete organogermanium compound to exhibit fluorescence, with a broad emission at 370 nm when excited at 312 nm. Crystals of the hexagermane were dichroic. Though colorless under ambient light, the hexagermane crystals appeared blue under "right" plane polarized light and pale yellow under "left" polarized light.;Since 1986 when the first pentagermane was synthesized, progress has not been successful at synthesizing a longer oligogermane. A linear hexagermane has finally been synthesized and completely characterized indicating that discrete oligomeric germanium compounds have the ability to mirror properties of polymeric germanium species given enough consecutive germanium atoms.
机译:具有单个锗-锗键的锗化合物包含有趣的光学和电子特性,例如在UV /可见光范围内的吸收率和电导率,这在其他更重的14族低聚物中也可以看到。与锡和硅类似物相比,已报道的合成锗化合物的方法极少。包括其结构在内,最长的完整线性直链低聚锗烷是全苯基化戊烷,Ge5Ph12。由于其固有的性质,人们感兴趣的是合成更长的线性低聚锗化合物。提出如果获得足够长的锗原子链,则也可以获得聚锗烷物质的特性。最初尝试使用掩蔽的Ge-H键进行保护/脱保护策略,但是只能获得线性的戊烷。所有产品均为液态,无法通过X射线晶体学进行全面表征。;在将合成工作从保护/脱保护策略转移到其他方面之后,成功的策略是从环状锗物种开始。在合理的总收率范围内,从环状(GePh2)4分三步合成了六锗烷Pri3Ge(GePh 2)4GePri3。六锗烷在紫外/可见光谱中显示出310 nm的lambdamax,比由六个或更少的连续锗原子合成的任何其他离散低聚锗烷更红移,并且DPV包含5个连续的不可逆的氧化波,这是第一个在1080 mV观察到的。六锗烷是第一个显示荧光的离散有机锗化合物,当在312 nm激发时在370 nm处有宽发射。六锗烷的晶体是二向色性的。虽然在环境光下是无色的,但六锗烷晶体在“右”平面偏振光下呈蓝色,而在“左”偏振光下呈淡黄色。自1986年合成第一个pentagermane以来,在合成更长的寡聚锗烷方面一直没有成功。最终合成了线性六锗烷并对其进行了完全表征,表明离散的低聚锗化合物具有足够的连续锗原子,能够镜像聚合物锗物种的特性。

著录项

  • 作者

    Roewe, Kimberly Diane.;

  • 作者单位

    Oklahoma State University.;

  • 授予单位 Oklahoma State University.;
  • 学科 Chemistry Inorganic.;Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 171 p.
  • 总页数 171
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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