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首页> 外文期刊>Collection of Czechoslovak Chemical Communications >EXPERIMENTAL AND COMPUTED DIPOLE MOMENTS IN DONOR-BRIDGE-ACCEPTOR SYSTEMS WITH p-PHENYLENE AND p-CARBORANEDIYL BRIDGES
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EXPERIMENTAL AND COMPUTED DIPOLE MOMENTS IN DONOR-BRIDGE-ACCEPTOR SYSTEMS WITH p-PHENYLENE AND p-CARBORANEDIYL BRIDGES

机译:对苯桥和对甲硼烷基桥的受体桥受体系统中的实验和计算偶极矩

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摘要

Dipole moments were measured for a series of substituted benzenes, biphenyls, terphenyls, C-monoaryl- and C,C'-diaryl-p-carboranes. For the donor-bridge-acceptor systems, Me^sub 2^N-X-NO^sub 2^, where X is 1,4-phenylene, biphenyl-4,4'-diyl, terphenyl and l,4-C^sub 6^H^sub 4^-p-CB^sub 10^H^sub 10^C-l,4-C^sub 6^H^sub 4^, the measured interaction dipole moments are 1.36, 0.74, 0.51 and 0.00 D, respectively. The magnitude of the dipole moment reflects the ability of the bridge to transmit electronic effects between donor and acceptor groups. Thus, whilst the 1,4-phenylene bridges allow moderate electronic interactions between the remote groups, the p-carboranediyl unit is less efficient as a conduit for electronic effects. Averaged dipole moments computed at the DFT (B3LYP/6-31G*) level of theory from two distinct molecular conformers are in good agreement with the experimental values. Examination of the calculated electronic structures provides insight into the nature of the interactions between the donor and acceptor moieties through these 2D and 3D aromatic bridges. The most significant cooperative effect of the bridge on the dipole moment occurs, in systems where there is some overlap between the HOMO and LUMO orbitals. This orbital overlap criterion may help to define the difference between "push-pull" systems in which electronic effects are mediated by the bridging moiety, and simpler systems in which the bridge acts as an electronically innocent spacer unit and through-space charge transfer/separation is dominant. [PUBLICATION ABSTRACT]
机译:测量了一系列取代的苯,联苯,三联苯,C-单芳基-和C,C'-二芳基-对-碳硼烷的偶极矩。对于供体桥受体系统,Me ^ sub 2 ^ NX-NO ^ sub 2 ^,其中X是1,4-亚苯基,联苯基-4,4'-二基,三联苯和1,4-C ^ sub 6 ^ H ^ sub 4 ^ -p-CB ^ sub 10 ^ H ^ sub 10 ^ Cl,4-C ^ sub 6 ^ H ^ sub 4 ^,测得的相互作用偶极矩分别为1.36、0.74、0.51和0.00 D 。偶极矩的大小反映了电桥在供体和受体之间传递电子效应的能力。因此,尽管1,4-亚苯基桥允许在远端基团之间进行适度的电子相互作用,但是对-碳硼二烷基单元作为电子效应的通道效率较低。从理论上的DFT(B3LYP / 6-31G *)水平,从两个不同的分子构象异构体计算出的平均偶极矩与实验值非常吻合。对计算的电子结构的检查提供了对通过这些2D和3D芳族桥的供体和受体部分之间相互作用的性质的了解。在HOMO和LUMO轨道之间存在某些重叠的系统中,电桥对偶极矩产生了最显着的协同作用。此轨道重叠准则可能有助于定义“推挽”系统(其中电子效应由桥联部分介导)与较简单的系统(其中桥充当电子无害间隔单元和穿越空间电荷转移/分离)之间的差异占主导地位。 [出版物摘要]

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    Ladislav DROZ(a1), Mark A. FOX(b1), Drahomir HNYK(c'*), Paul J. LOW(b2),J. A. Hugh MACBRIDE(b3) and Václav VSETECKA(a2)a Department of Organic Chemistry, Faculty of Science, Charles University,Hlavova 2030, CZ-128 40 Prague 2, Czech Republic, e-mail: 1 droz@prfdec.natur.cuni.cz,2 vsetecka@prfdec.natur.cuni.czb Department of Chemistry, University of Durham, South Road, Durham, DH1 3LE, UK,e-mail: * m.a.fox@durham.ac.uk, 2 p.j.low@durham.ac.uk, 3j.a.h.macbride@durham.ac.ukc Institute of Inorganic Chemistry, Academy of Sciences of the Czech Republic, v.v.i.,No. 1001, CZ-2S0 68 Husinec-fiez, Czech Republic, e-mail: hnyk@iic.cas.czReceived July 1, 2008Accepted September 15, 2008Published online January 29, 2009Dedicated to the memory of Professor Otto Exner.,;

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