首页> 外文学位 >A THEORETICAL INVESTIGATION OF THE ELECTRONIC AND MOLECULAR STRUCTURE OF POLYENES COORDINATED TO TRANSITION METAL FRAGMENTS.
【24h】

A THEORETICAL INVESTIGATION OF THE ELECTRONIC AND MOLECULAR STRUCTURE OF POLYENES COORDINATED TO TRANSITION METAL FRAGMENTS.

机译:与过渡金属片段协同作用的聚乙烯的电子和分子结构的理论研究。

获取原文
获取原文并翻译 | 示例

摘要

Nonempirical, approximate, Fenske-Hall molecular orbital (FHMO) calculations were used to determine the complex and component fragment wavefunctions for the series of 18-electron, polyene-transition metal complexes, (C(,n)H(,n))ML(,m) {n=3-8; M=Ti-Ni; L=CO, CN('-), NO('+); m=2-3} in idealized, regular geometries for the staggered and eclipsed conformations. Total electron density distributions were computed from the molecular and fragment wavefunctions, and the fragment sum was subtracted from the total to yield deformation density ((DELTA)(rho)) maps of the molecule. The maps revealed electron density loss from carbon-carbon (C-C) bonds or carbon atoms in the complexed polyene which were eclipsed by a counter-ligand (L) and electron density gain by C-C bonds or carbon atoms which were not eclipsed by L. Thus, eclipsed C-C bonds are longer than uneclipsed bonds, and eclipsed carbon atoms are closer to the metal and are more positively charged than uneclipsed atoms. It is suggested that the charge differences in the eclipsed conformers lead to enhanced nucleophilic attack at the eclipsed carbons and enhanced electrophilic attack at the uneclipsed carbons.;HFR and GMO-CI calculations were also performed on a set of four (diene)ML(,n) complexes to compare and contrast the effects of two isolobal transition metal fragments {Fe(CO)(,3) and Co(C(,5)H(,5))} on the structure and reactivity of two different closed dienes (cyclobutadiene and cyclopentadienone). These calculations, along with a FHMO analysis, demonstrated that butadiene-like ligands have approximately three equal C-C bond lengths when complexed to Fe(CO)(,3) but one long and two short C-C bonds when complexed to Co(C(,5)H(,5)). Furthermore, this result contradicts the earlier predictions of Mason and co-workers.;Ab initio self-consistent-field (SCF) MO calculations beyond the Hartree-Fock-Roothaan (HRF) single determinant level were performed on ((eta)('4)-C(,4)H(,4))Fe(CO)(,3) using the generalized-molecular-orbital (GMO) technique with configuration interaction (CI) to correctly assign the ultraviolet photoelectron spectrum of the complex. The upper valence bands, which are predicted to be in the wrong order by Koopmans' Theorem and (DELTA)SCF calculations, are correctly ordered under the GMO-CI procedure, although the band gap is large. The correlated GMO-CI wavefunction is shown to correctly describe the unusual electrophilic reactivity of complexed cyclobutadiene.
机译:使用非经验近似Fenske-Hall分子轨道(FHMO)计算来确定18电子,多烯-过渡金属配合物(C(,n)H(,n))ML系列的配合物和组分碎片波函数(,m){n = 3-8; M = Ti-Ni; L = CO,CN('-),NO('+); m = 2-3}具有理想的规则几何形状,用于交错和偏光构型。从分子和碎片波函数计算总电子密度分布,并从总数中减去碎片总和,以产生分子的变形密度(Δr(rho))图。这些图揭示了配位多烯中的碳-碳(CC)键或碳原子被反配体(L)所掩盖的电子密度损失,以及CC键或未被L所掩盖的碳原子的电子密度增加。 ,蚀的CC键比无蚀的键长,蚀的碳原子比无蚀的原子更靠近金属,并且带正电。有人认为,蚀变构象异构体的电荷差异会导致蚀变碳上亲核攻击增强,而蚀变碳上亲电攻击增强。HFR和GMO-CI的计算也基于一组四个(diene)ML(, n)配合物,用于比较和对比两个等容过渡金属片段{Fe(CO)(,3)和Co(C(,5)H(,5))}对两种不同闭环二烯的结构和反应性的影响(环丁二烯和环戊二烯酮)。这些计算以及FHMO分析表明,与Fe(CO)(,3)络合时,丁二烯样配体具有约3个相等的CC键长,而与Co(C(,5)络合时具有1个长CC和2个短CC键。 )H(,5))。此外,该结果与梅森及其同事的早期预测相矛盾。;在((eta)(')上进行了超出Hartree-Fock-Roothaan(HRF)单行列式水平的从头算起自洽场(SCF)MO计算4)-C(,4)H(,4)Fe(CO)(,3)使用具有构型相互作用(CI)的广义分子轨道(GMO)技术正确分配配合物的紫外光电子光谱。通过高普曼定理和(Δ)SCF计算预测的高价带是错误的顺序,尽管带隙很大,但在GMO-CI程序中正确地排列了高价带。相关的GMO-CI波函数显示正确描述了复杂的环丁二烯的异常亲电反应性。

著录项

  • 作者

    CHINN, JOHN WILLIS, JR.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Chemistry Inorganic.
  • 学位 Ph.D.
  • 年度 1982
  • 页码 179 p.
  • 总页数 179
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号