Supramolecular polymerization and gel formation of Bis(merocyanine) dyes driven by dipolar aggregation

被引:159
作者
Yao, S
Beginn, U
Gress, T
Lysetska, M
Würthner, F
机构
[1] Rhein Westfal TH Aachen, Lehrstuhl & Makromol Chem, ITMC, DWI, D-52056 Aachen, Germany
[2] Univ Wurzburg, Inst Organ Chem, D-97070 Wurzburg, Germany
关键词
D O I
10.1021/ja0496367
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Two highly dipolar merocyanine dyes were tethered by a rigid tris(n-dodecyloxy)xylylene unit that preorganizes the dyes for a supramolecular polymerization process through intermolecular aggregation of the dyes. UV/vis spectroscopy revealed a solvent dependent equilibrium between monomeric dyes and two different types of dye aggregates that are characterized by hypsochromically shifted D- and H-type absorption bands. Taking into account the ditopic nature of the supramolecular building blocks, the occurrence of the D-band indicates the formation of an oligomeric/polymeric supramolecular chain whereas the observation of the H-band suggests a higher order assembly. For the H-aggregated dyes, intrinsic viscosities exceed 0.65 L g(-1) in methylcyclohexane, values typically found for macromolecular solutions. At higher concentration, further association of these aggregates takes place by entanglement of the alkyl groups leading to a substantial increase in viscosity and gelation. Rheology studies show linear viscoelastic behavior which was attributed to the formation of an entangled dynamic network. AFM and cryo-TEM studies of the gel reveal long and stiff rod-type assemblies. X-ray diffraction studies for a solid film show columnar mesomorphism. Based on these results, a structural model is proposed in which six helically preorganized strands of the supramolecular polymer intertwine to form a rod with a diameter of about 5 nm. Within these rods all dyes are tightly aggregated in a tubular fashion giving rise to delocalized excitonic states, and the pi-conjugated tube is jacketed by the tridodecyloxy groups.
引用
收藏
页码:8336 / 8348
页数:13
相关论文
共 116 条
[31]   Self-assembly of oligomeric porphyrin rings [J].
Haycock, RA ;
Hunter, CA ;
James, DA ;
Michelsen, U ;
Sutton, LR .
ORGANIC LETTERS, 2000, 2 (16) :2435-2438
[32]  
Herbst W., 2006, Industrial Organic Pigments: Production, Properties, Applications
[33]  
HERZ AH, 1974, PHOTOGR SCI ENG, V18, P323
[34]   AGGREGATION OF SENSITIZING DYES IN SOLUTION AND THEIR ADSORPTION ONTO SILVER-HALIDES [J].
HERZ, AH .
ADVANCES IN COLLOID AND INTERFACE SCIENCE, 1977, 8 (04) :237-298
[35]   ON THE STRUCTURE OF BACTERIOCHLOROPHYLL MOLECULAR AGGREGATES IN THE CHLOROSOMES OF GREEN BACTERIA - A MOLECULAR MODELING STUDY [J].
HOLZWARTH, AR ;
SCHAFFNER, K .
PHOTOSYNTHESIS RESEARCH, 1994, 41 (01) :225-233
[36]   Unusual emission properties of a triphenylene-based organogel system [J].
Ikeda, M ;
Takeuchi, M ;
Shinkai, S .
CHEMICAL COMMUNICATIONS, 2003, (12) :1354-1355
[37]   Spectral absorption and fluorescence of dyes in the molecular state [J].
Jelley, EE .
NATURE, 1936, 138 :1009-1010
[38]   Building highly sensitive dye assemblies for biosensing from molecular building blocks [J].
Jones, RM ;
Lu, LD ;
Helgeson, R ;
Bergstedt, TS ;
McBranch, DW ;
Whitten, DG .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2001, 98 (26) :14769-14772
[39]   Factors influencing self-aggregation tendencies of cationic porphyrins in aqueous solution [J].
Kano, K ;
Fukuda, K ;
Wakami, H ;
Nishiyabu, R ;
Pasternack, RF .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2000, 122 (31) :7494-7502
[40]  
Kasha M., 1965, Pure Appl. Chem, V11, P371, DOI [10.1351/pac196511030371, DOI 10.1351/PAC196511030371]