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Oligomeric Rods of Alkyl-and Hydridogallium Imides

机译:烷基和氢吡啶二酰亚胺的低聚棒

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摘要

Reaction of [RGa(NMe_2)_2]_2,where R = Me,Et,Bu,and Hx,with ammonia at 150 deg C in an autoclave produced insoluble white powders formulated as oligomers of [RGaNH]_n.The analogous reaction between NH_3 and MeGa[N(SiMe_3)_2]_2 at low temperature(<25 deg C)formed an isolable intermediate,[MeGa-(mu-NH_2)N(SiMe_3)_2]_2,that was characterized using single-crystal X-ray diffraction.Infrared spectroscopy and X-ray diffraction of the oligomers were consistent with a rodlike structure comprised of six-membered,[RGaNH]_3 rings stacked perpendicular to the long axis of the rod.The method of synthesis,formula,and diffraction results suggested a structural similarity between the alkyl,[RGaNH]_n,and the previously reported hydride,[HGaNH]_n.The structural and electronic properties of rods having the general formula H_3-[(HXYH)_3]_nH_3(XY = GaN,GeC;n = 1-9)were investigated using density functional theory.Atomic electronegativity differences between the group 13/15 and 14/14 systems were found to play important roles in the geometrical structures of the two rods and also caused significant differences in the electronic structures.Energetically,it was found to be increasingly favorable to add additional cyclotrigallazane rings to the GaN rods,while for the GeC rods,there was a roughly constant energy cost associated with each additional ring.The electric dipole moments of the GaN rods increased substantially with length;in the GeC rods,charge separation occurred to a much smaller extent and had a polarization opposite to that found in GaN.In addition,increased dipole moments correlated with smaller electronic excitation energies,as predicted by time-dependent density functional theory.All of the powders exhibited luminescence in the visible spectrum at room temperature.Structure observed in the photoluminescence spectra of [HGaNH]_n and [MeGaNH]_n was interpreted as arising from rods of different length.
机译:[RGa(NMe_2)_2] _2(R = Me,Et,Bu和Hx)与氨在高压釜中于150℃反应,制得不溶性白色粉末,配制为[RGaNH] _n的低聚物。NH_3之间的相似反应与MeGa [N(SiMe_3)_2] _2在低温(<25℃)下形成可分离的中间体[MeGa-(mu-NH_2)N(SiMe_3)_2] _2,使用单晶X射线表征低聚物的红外光谱和X射线衍射与由垂直于棒长轴堆叠的六元[RGaNH] _3环组成的棒状结构一致。合成方法,分子式和衍射结果表明通式为H_3-[((HXYH)_3] _nH_3(XY = GaN,GeC)的棒的结构和电子性能。烷基[RGaNH] _n与先前报道的氢化物[HGaNH] _n之间的结构相似性。使用密度泛函理论研究n = 1-9),发现13/15和14/14组系统之间的原子电负性差异从能量上讲,人们发现在GaN棒中添加额外的环三镓氮烷环越来越有利,而对于GeC棒,大约有两类棒的几何结构起着重要作用。 GaN棒的电偶极矩随长度的增加而显着增加;在GeC棒中,电荷分离发生的程度要小得多,并且极化与GaN中的极化相反。如随时间变化的密度泛函理论所预测,偶极矩与较小的电子激发能相关。所有粉末在室温下均在可见光谱中显示出发光。[HGaNH] _n和[MeGaNH] _n的光致发光光谱中观察到的结构为解释为由不同长度的杆引起。

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  • 来源
    《Journal of the American Chemical Society》 |2005年第5期|p.1493-1503|共11页
  • 作者单位

    Contribution from the Department of Chemistry and Supercomputing Institute,University of Minnesota,Minneapolis,Minnesota 55455,and The Dow Corning Corporation,Midland,Michigan 48686-0994;

    Contribution from the Department of Chemistry and Supercomputing Institute,University of Minnesota,Minneapolis,Minnesota 55455,and The Dow Corning Corporation,Midland,Michigan 48686-0994;

    Contribution from the Department of Chemistry and Supercomputing Institute,University of Minnesota,Minneapolis,Minnesota 55455,and The Dow Corning Corporation,Midland,Michigan 48686-0994;

    Contribution from the Department of Chemistry and Supercomputing Institute,University of Minnesota,Minneapolis,Minnesota 55455,and The Dow Corning Corporation,Midland,Michigan 48686-0994;

    Contribution from the Department of Chemistry and Supercomputing Institute,University of Minnesota,Minneapolis,Minnesota 55455,and The Dow Corning Corporation,Midland,Michigan 48686-0994;

    Contribution from the Department of Chemistry and Supercomputing Institute,University of Minnesota,Minneapolis,Minnesota 55455,and The Dow Corning Corporation,Midland,Michigan 48686-0994;

    Contribution from the Department of Chemistry and Supercomputing Institute,University of Minnesota,Minneapolis,Minnesota 55455,and The Dow Corning Corporation,Midland,Michigan 48686-0994;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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