首页> 外文期刊>The Journal of Organic Chemistry >Synthesis, structure, and transannular pi-pi interaction of three- and four-layered [3.3]paracyclophanes
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Synthesis, structure, and transannular pi-pi interaction of three- and four-layered [3.3]paracyclophanes

机译:三层和四层[3.3]对环环烷的合成,结构和跨环pi-pi相互作用

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The synthesis of three- and four-layered [3.3]paracyclophanes ([3.3]PCPs) 3-5 has been accomplished by utilizing the (p-ethylbenzenesulfonyl)methyl isocyanide (EbsMIC) method. The structures of the three- to four-layered [3.3]PCPs 3-5 and their diones 8, 10, and 11 have been elucidated based on the H-1 NMR spectra and finally by X-ray structural analysis. In the three-layered [3.3]PCP-dione 8, the trimethylene bridges of the [3.3]PCP unit assume a chair conformation similar to that of 2, while the [3.3]PCP-2,11-dione unit assumes a boat conformation different from that of [3.3]PCP-dione 1 with a chair conformation. On the other hand, the two [3.3]PCP units in three-layered [3.3]PCP 3 both assume a boat conformation. In the four-layered [3.3]PCP-dione 10, the two outer [3.3]PCP units assume a boat conformation while the inner dione unit has a chair conformation. The trimethylene bridges in the four-layered [3.3]PCP 4 are highly disordered even at -150 degrees C. All the outer benzene rings are distorted into a boat form while the inner ones are distorted into a twist form. In the electronic spectra, bathochromic shift and hyperchromic effect are observed, but the magnitude decreases with an increase in the number of layers and the spectra become structureless. In the charge-transfer (CT) bands of the three- to four-layered [3.3]PCPs 3-5 with tetracyanoethylene (TCNE), two absorption maxima (lambda(max)) are observed. The effect of an increase in the layers becomes significant, and the changes in the longest wavelength lambda(max) values from two to three and three to four are ca. 60 and 50 nm, respectively. By comparison of the stereoisomeric four-layered [3.3]PCPs 4 (meso) and 5 (racemic), the helical arrangement of the trimethylene bridges of 5 shows a more efficient transannular pi-electronic interaction. In the, three- to four-layered [3.3]PCP-diones, a magnitude of the CT interaction almost comparable to that of [3.3]PCP 2 was observed, and this indicates that the -CH2COCH2- bridges inhibit the CT interaction and that this tendency is supported by the calculated HOMO energy levels and observed oxidation potentials. Three- and four-layered [3.3]PCPs 3-5 show reversible redox processes, and 4 and 5 show an electron-donating ability almost comparable to that of [3(6)]CP. Very good correlation between the lambda(max) of the CT bands with TCNE and the oxidation potentials is observed.
机译:三层和四层[3.3]对环环烷([3.3] PCPs)3-5的合成已通过利用(对乙基苯磺酰基)甲基异氰化物(EbsMIC)方法完成。基于H-1 NMR光谱,最后通过X射线结构分析,阐明了三层至四层[3.3] PCP 3-5及其二酮8、10和11的结构。在三层[3.3] PCP-dione 8中,[3.3] PCP单元的三亚甲基桥采用类似于2的椅子构型,而[3.3] PCP-2,11-dione单元则采用船型。与[3.3] PCP-dione 1具有椅子构型不同。另一方面,三层[3.3] PCP 3中的两个[3.3] PCP单元均呈船形。在四层[3.3] PCP-dione 10中,两个外部[3.3] PCP单元呈现船形,而内部dione单元具有椅子形。即使在-150摄氏度下,四层[3.3] PCP 4中的三亚甲基桥也是高度无序的。所有外苯环都扭曲成船形,而内苯环则扭曲成扭曲形。在电子光谱中,观察到红移效应和增色效应,但是随着层数的增加,幅值减小,并且光谱变得无结构。在三到四层[3.3] PCP 3-5与四氰基乙烯(TCNE)的电荷转移(CT)谱带中,观察到两个吸收最大值(λ(max))。层数增加的影响变得显着,最长波长λ(max)值从2到3和3到4的变化约为ca。 60和50 nm。通过比较立体异构的四层[3.3] PCPs 4(内消旋)和5(外消旋),三亚甲基桥5的螺旋排列显示了更有效的跨环π电子相互作用。在三到四层的[3.3] PCP-二酮中,观察到CT相互作用的强度几乎与[3.3] PCP 2相当,这表明-CH2COCH2-桥抑制了CT相互作用,并且计算出的HOMO能级和观察到的氧化势支持了这种趋势。三层和四层[3.3] PCP 3-5显示出可逆的氧化还原过程,而4和5显示出几乎与[3(6)] CP相当的给电子能力。观察到带有TCNE的CT谱带的lambda(max)与氧化电位之间有很好的相关性。

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