TY - JOUR
T1 - Supramolecular polymers in aqueous medium
T2 - Rational design based on directional hydrophobic interactions
AU - Ustinov, Alona
AU - Weissman, Haim
AU - Shirman, Elijah
AU - Pinkas, Iddo
AU - Zuo, Xiaobing
AU - Rybtchinski, Boris
N1 - Israel Science Foundation; Helen and Martin Kimmel Center for Molecular Design; Toronto, Canada; U.S. DOE [DE-AC02-06CH11357]We thank Dr. Lev Weiner for assistance with the EPR experiments and Elisha Krieg for valuable discussions. This work was supported by grants from the Israel Science Foundation and the Helen and Martin Kimmel Center for Molecular Design. The cryo-TEM studies were conducted at the Irving and Chema Moskowitz Center for Nano and Bio-Nano Imaging (Weizmann Institute). Transient absorption studies were performed at the Dr. J. Trachtenberg laboratory for photobiology and photobiotechnology (Weizmann Institute), and were supported by a grant from Ms. S. Zuckerman (Toronto, Canada). Use of the Advanced Photon Source, an Office of Science User Facility operated for the U.S. Department of Energy (DOE) Office of Science by Argonne National Laboratory, was supported by the U.S. DOE under Contract No. DE-AC02-06CH11357. B.R. holds the Abraham and Jennie Fialkow Career Development Chair.
PY - 2011/10/12
Y1 - 2011/10/12
N2 - Self-assembly in aqueous medium is of primary importance and widely employs hydrophobic interactions. Yet, unlike directional hydrogen bonds, hydrophobic interactions lack directionality, making difficult rational self-assembly design. Directional hydrophobic motif would significantly enhance rational design in aqueous self-assembly, yet general approaches to such interactions are currently lacking. Here, we show that pairwise directional hydrophobic/π- stacking interactions can be designed using well-defined sterics and supramolecular multivalency. Our system utilizes a hexasubstituted benzene scaffold decorated with 3 (compound 1) or 6 (compound 2) amphiphilc perylene diimides. It imposes a pairwise self-assembly mode, leading to well-defined supramolecular polymers in aqueous medium. the assemblies were characterized using cryogenic electron microscopy, small-angle X-ray scattering, optical spectroscopy, and EPR. Supramolecular polymerization studies in the case of 2 revealed association constants in 10 8 M -1 range, and significant enthalpic contribution to the polymerization free energy. The pairwise PDI motif enables exciton confinement and localized emission in the polymers based on 1 and 2's unique photonic behavior, untypical of the extended π-stacked systems. Directional pairwise hydrophobic interactions introduce a novel strategy for rational design of noncovalent assemblies in aqueous medium, and bring about a unique photofunction.
AB - Self-assembly in aqueous medium is of primary importance and widely employs hydrophobic interactions. Yet, unlike directional hydrogen bonds, hydrophobic interactions lack directionality, making difficult rational self-assembly design. Directional hydrophobic motif would significantly enhance rational design in aqueous self-assembly, yet general approaches to such interactions are currently lacking. Here, we show that pairwise directional hydrophobic/π- stacking interactions can be designed using well-defined sterics and supramolecular multivalency. Our system utilizes a hexasubstituted benzene scaffold decorated with 3 (compound 1) or 6 (compound 2) amphiphilc perylene diimides. It imposes a pairwise self-assembly mode, leading to well-defined supramolecular polymers in aqueous medium. the assemblies were characterized using cryogenic electron microscopy, small-angle X-ray scattering, optical spectroscopy, and EPR. Supramolecular polymerization studies in the case of 2 revealed association constants in 10 8 M -1 range, and significant enthalpic contribution to the polymerization free energy. The pairwise PDI motif enables exciton confinement and localized emission in the polymers based on 1 and 2's unique photonic behavior, untypical of the extended π-stacked systems. Directional pairwise hydrophobic interactions introduce a novel strategy for rational design of noncovalent assemblies in aqueous medium, and bring about a unique photofunction.
UR - http://www.scopus.com/inward/record.url?scp=80053535138&partnerID=8YFLogxK
U2 - 10.1021/ja2066225
DO - 10.1021/ja2066225
M3 - مقالة
SN - 0002-7863
VL - 133
SP - 16201
EP - 16211
JO - Journal of the American Chemical Society
JF - Journal of the American Chemical Society
IS - 40
ER -