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带有蒽侧壁的分子夹的合成及超分子性质

Synthesis and supramolecular properties of molecular clips with anthracene sidewalls.

作者信息

Klärner Frank-Gerrit, Kahlert Björn, Boese Roland, Bläser Dieter, Juris Alberto, Marchioni Filippo

机构信息

Institut für Organische Chemie der Universität Duisburg-Essen, 45117 Essen, Germany.

出版信息

Chemistry. 2005 May 20;11(11):3363-74. doi: 10.1002/chem.200401257.

Abstract

Novel molecular clips with anthracene sidewalls (1 a-c) were synthesized; they form stable host-guest complexes with a variety of electron-deficient aromatic and quinoid molecules. According to single-crystal structure analyses of clip 1 c and 1,2,4,5-tetracyanobenzene (TCNB) complex 14@1 b, the clips' anthracene sidewalls have to be compressed substantially during the complex formation to provide attractive pi-pi interactions between the aromatic guest molecule and the two anthracene sidewalls in the complex. The compression and expansion of aromatic sidewalls are calculated by molecular mechanics to be low-energy processes, so the energy required for compression of the anthracene sidewalls during complex formation is apparently overcompensated by the gain in energy resulting from the attractive pi-pi interactions. The finding that complexes of the clips 1 a-c are more stable than those of the corresponding clips 2 a-c can be explained in terms of the larger van der Waals contact surfaces of the anthracene sidewalls in 1 a-c (relative to the naphthalene sidewalls in 2 a-c). Color changes resulting from charge-transfer (CT) bands are observed in complex formation by 1 a-c: from colorless to red or purple with TCNB (14), and from yellow to green with 2,4,7-trinitro-9-fluorenone TNF (17). Independently, the host 1 b and guest 14 fluoresce from their respective excited singlet states, whilst in the complex 14@1 b the charge-transfer state quenches the higher-energy singlet states of the two components, and as a result luminescence is only observed from this new CT state. To the best of our knowledge, complex 14@1 b is the first example of CT luminescence from a host-guest complex. The binding constant determined for the formation of the TCNB complex 14@1 b from a UV/Vis titration experiment (Ka = 12 400 m(-1)) agrees well with the value (K(a) = 12 800 m(-1)) obtained by 1H NMR titration.

摘要

合成了带有蒽侧壁的新型分子夹(1 a - c);它们与多种缺电子芳香族和醌类分子形成稳定的主客体复合物。根据分子夹1 c与1,2,4,5 - 四氰基苯(TCNB)复合物14@1 b的单晶结构分析,在复合物形成过程中,分子夹的蒽侧壁必须大幅压缩,以在复合物中芳香族客体分子与两个蒽侧壁之间提供有吸引力的π - π相互作用。通过分子力学计算得出,芳香族侧壁的压缩和膨胀是低能量过程,因此在复合物形成过程中蒽侧壁压缩所需的能量显然被有吸引力的π - π相互作用所带来的能量增加所过度补偿。分子夹1 a - c的复合物比相应的分子夹2 a - c的复合物更稳定这一发现,可以用1 a - c中蒽侧壁更大的范德华接触面(相对于2 a - c中的萘侧壁)来解释。在1 a - c形成复合物的过程中观察到由电荷转移(CT)带引起的颜色变化:与TCNB(14)形成复合物时从无色变为红色或紫色,与2,4,7 - 三硝基 - 9 - 芴酮TNF(17)形成复合物时从黄色变为绿色。另外,主体1 b和客体14各自从其激发单重态发出荧光,而在复合物14@1 b中,电荷转移态淬灭了两个组分的高能单重态,结果仅从这个新的CT态观察到发光。据我们所知,复合物14@1 b是主客体复合物CT发光的首个实例。通过紫外/可见滴定实验测定的形成TCNB复合物14@1 b的结合常数(Ka = 12400 m⁻¹)与通过¹H NMR滴定获得的值(K(a) = 12800 m⁻¹)吻合良好。

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