Department of Chemistry, Indian Institute of Technology Madras, Chennai 600 036, India.
Chemistry. 2011 May 2;17(19):5327-43. doi: 10.1002/chem.201002981. Epub 2011 Mar 14.
The tunable self-assembly of a fullerene (C(60))-N,N-dimethylaminoazobenzene (DPNME) molecular system as a function of solvent polarity in THF/water binary solvent is reported. Gradual increase of the volume fraction of the nonsolvent water in a 1×10(-5) M THF solution of DPNME at a mixed dielectric constant ε(mix)≈42 resulted in initial redshifting of the (1)(π→π(*)) absorption band, which signified the 1D head-to-tail or J-type arrangement of the DPNME molecular system. Further increase in the solvent polarity to ε(mix)≈66 evidenced formation of an antiparallel head-to-tail or H-type molecular arrangement in conjunction with the J-aggregates, thereby establishing a solvent-polarity-dependent dynamic equilibrium between the monomer ↔ J-aggregate ↔ H-aggregate. The controlled aggregation was governed by the synergetic effect of intermolecular donor-acceptor interaction between the electron-deficient fullerene ring and the electron-rich N,N-dimethylamino-substituted aromatic ring; typically, van der Waals and π-π interactions between the molecules constituting a pair of dimers were envisaged. An agreement between the semiempirically calculated drastically reduced oscillator strength of the DPNME H-dimer in the antiparallel configuration (0.69 vs. 1.29 in the monomeric DPNME) and the experimental electronic absorption spectra beyond ε(mix)=66 further strengthened this assignment to the hitherto forbidden antiparallel H-dimer. Complementing the above, the periodicity of molecular self-assembly dictated a monoclinic unit cell in the single-crystal XRD packing pattern with a C2/c space group; the molecules packed laterally with mutual interdigitation with the donor (E)-N,N-dimethyl-4-(p-tolyldiazenyl)aniline (AZNME) parts in an antiparallel fashion (contrary to the usual expectation for H-aggregates) with strong inter- and intrapair van der Waals and π-π interactions between the constituent fullerene moieties. Unlike those of porphyrin/phthalocyanine bowl-like donor-initiated architectures, a rare class of DPNME dyadic supramolecular self-assemblies was realized with π-extended 2D fullerene networks, in which the linear geometry of the AZNME donor and the conformational rigidity of the fullerene acceptor played crucial roles.
作为溶剂极性函数,在 THF/水二元溶剂中,富勒烯(C(60))-N,N-二甲基氨基偶氮苯(DPNME)分子体系的可调自组装得到了报道。在混合介电常数 ε(mix)≈42 时,将体积分数逐渐增加至 1×10(-5) M DPNME 的 THF 溶液中的非溶剂水,导致(1)(π→π(*))吸收带最初红移,这表明 DPNME 分子体系的 1D 头对头或 J-型排列。进一步增加溶剂极性至 ε(mix)≈66 表明形成反平行头对头或 H-型分子排列,与 J-聚集体结合,从而在单体↔J-聚集体↔H-聚集体之间建立溶剂极性依赖性动态平衡。受控聚集受到富勒烯环与富电子 N,N-二甲基氨基取代芳环之间的分子间给体-受体相互作用的协同效应的控制;通常,对构成一对二聚体的分子之间的范德华和π-π相互作用进行了设想。半经验计算的 DPNME H-二聚体在反平行构象下明显降低的振子强度(0.69 与单体 DPNME 中的 1.29 相比)与实验电子吸收光谱之间的一致性进一步证实了这一分配,这是迄今为止禁止的反平行 H-二聚体。作为补充,分子自组装的周期性规定了单晶 XRD 堆积模式中的单斜单位细胞,具有 C2/c 空间群;分子以侧向方式堆积,供体(E)-N,N-二甲基-4-(对甲苯亚氨基)苯胺(AZNME)部分以反平行方式相互交织(与 H-聚集体的通常预期相反),在构成富勒烯部分之间具有强的相互和内对范德华和π-π相互作用。与卟啉/酞菁碗状供体引发结构不同,实现了一类罕见的 DPNME 二联体超分子自组装,其中具有扩展的二维富勒烯网络,其中 AZNME 供体的线性几何形状和富勒烯受体的构象刚性起着关键作用。