[1] Hecht S, Huc I. Foldamers: structure, properties, and applications [M]. Weinheim: Wiley-VCH, 2007. [2] Piguet C, Bernardinelli G, Hopfgartner G. Helicates as versatile supramolecular complexes [J]. Chemical Reviews, 1997, 97(6): 2 005-2 062. [3] Albrecht M. "Let's twist again"-double-stranded, triple-stranded, and circular helicates [J]. Chemical Reviews, 2001, 101(11): 3 457-3 497. [4] Elhabiri M, Scopelliti R, Bu1nzli J G, et al. Lanthanide helicates self-assembled in water: a new class of highly stable and luminescent dimetallic carboxylates [J]. Journal of the American Chemical Society, 1999, 121(46): 10 747-10 762. [5] Stomeo F, Lincheneau C, Leonard J P, et al. Metal-directed synthesis of enantiomerially pure dimetallic lanthanide luminescent triple-stranded helicates [J]. Journal of the American Chemical Society, 2009, 131(28): 9 636-9 637. [6] Zeckert K, Hamacek J, Rivera J, et al. A simple thermodynamic model for rationalizing the formation of self-assembled multimetallic edifices: application to triple-stranded helicates [J]. Journal of the American Chemical Society, 2004, 126(37): 11 589-11 601. [7] Williams A F, Piguet C, Bernardinelli G. A self-assembling triple-helical CO2II complex synthesis and structure [J]. Angewandte Chemie International Edition, 1991, 30(11): 1 490-1 492. [8] Zhang Z, Dolphin D. A triple-stranded helicate and mesocate from the same metal and ligand [J]. Chemical Communications, 2009, (45): 6 931-6 933. [9] Hawes C S, Fitchett C M, Kruger P E. Synthesis of an Fe(II) dinuclear triple helicate from a novel-bis-(N-pyrazolyl)pyridine ligand, [Fe2L3]4+: solution and solid-state studies [J]. Supramolecular Chemistry, 2012, 24(8): 553-562. [10] Cui F, Li S, Jia C, et al. Anion-dependent formation of helicates versus mesocates of triple-stranded M2L3 (M=Fe2+, Cu2+) complexes [J]. Inorganic Chemistry, 2012, 51(1): 179-187. [11] Morita Y, Yakiyama Y, Nakazawa S, et al. Triple-Stranded metallo-helicates addressable as Lloyd's electron spin qubits [J]. Journal of the American Chemical Society, 2010, 132(20): 6 944-6 946. [12] Matthews C J, Onions S T, Morata G, et al. A self-assembled tetracopper triple-stranded helicate: towards the controlled synthesis of finite one-dimensional magnetic chains [J]. Angewandte Chemie International Edition, 2003, 42(27): 3 166-3 169. [13] Terazzi E, Guénée L, Varin J, et al. Silver baits for the "miraculous draught" of amphiphilic lanthanide helicates [J]. Chemistry-A European Journal, 2011, 17(1): 184-195. [14] Zeckert K, Hamacek J, Senegas J, et al. Predictions, synthetic strategy, and isolation of a linear tetrametallic triple-stranded lanthanide helicate [J]. Angewandte Chemie International Edition, 2005, 44(48): 7 954-7 958. [15] Riis-Johannessen T, Bernardinelli G, Filinchuk Y, et al. Self-assembly of the first discrete 3d-4f-4f triple-stranded helicate [J]. Inorganic Chemistry, 2009, 48(12): 5 512-5 525. [16] Zhu X, He C, Dong D, et al. Cerium-based triple-stranded helicates as luminescent chemosensors for the selective sensing of magnesium ions [J]. Dalton Transactions, 2010, 39(42): 10 051-10 055. [17] Zhang Z, Dolphin D. Synthesis of triple-stranded complexes using bis(dipyrromethene) ligands [J]. Inorganic Chemistry, 2010, 49(24): 11 550-11 555. [18] Meistermann I, Moreno V, Prieto M J, et al. Intramolecular DNA coiling mediated by metallosupramolecular cylinders: differential binding of P and M helical enantiomers [J]. Proceedings of the National Academy of Science of the United State of America, 2002, 99(8): 5 069-5 074. [19] Potts K T, Horwitz C P, Fessak A, et al. Coordination of ethynylpyridine ligands with cu(I): X-ray structure of a novel, triple-helical, tricuprous complex [J]. Journal of the American Chemical Society, 1993, 115(22): 10 444-10 445. [20] O'Keefe B J, Steel P J. Self-assembly and X-ray structure of a triple helicate with two trigonal silver(I) termini [J]. Inorganic Chemistry Communications, 2000, 3(9): 473-475. [21] Tang X L, Dou W, Zhou J A, et al. Metallomacrocycle or coordination polymer: spacer-directed self-assembly of transition-metal complexes based on flexible bis(benzotriazole) ligands [J]. CrystEngComm, 2011, 13(8): 2 890-2 898. [22] Li Q, Huang F, Fan Y, et al. Ag(I)-directed triple-stranded helicates with meta-ethynylpyridine ligands [J]. European Journal of Inorganic Chemistry, 2014, (20): 3 235-3 244. [23] Abe H, Kurokawa H, Chida Y, et al. Preparation of ethynylpyridine macrocycles by oxidative coupling of an ethynylpyridine trimer with terminal acetylenes [J]. Journal of Organic Chemistry, 2011, 76(1): 309-311. [24] Su C Y, Cai Y P, Chen C L, et al. Ligand-directed molecular architectures: self-assembly of two-dimensional rectangular metallacycles and three-dimensional trigonal or tetragonal prisms [J]. Journal of the American Chemical Society, 2003, 125(28): 8 595-8 613. [25] Bosch E, Barnes C L, Brennan N L, et al. Cation-induced π-stacking [J]. Journal of Organic Chemistry, 2008, 73(10): 3 931-3 934. [26] Furusho Y, Miwa K, Asai R, et al. Synthesis and helical structure of spiroborate-based double-stranded helicate with oligophenol strands bearing bipyridine units [J]. Chemistry-A European Journal, 2011, 17(50): 13 954-13 957. [27] Bunzen J, Bruhn T, Bringmann G, et al. Synthesis and helicate formation of a new family of BINOL-based bis(bipyridine) ligands [J]. Journal of the American Chemical Society, 2009, 131(10): 3 621-3 630. |