2014
DOI: 10.1021/ar5000709
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Dynamic Supramolecular Complexes Constructed by Orthogonal Self-Assembly

Abstract: CONSPECTUS: Supramolecular complexes, including various low-molecular-mass structures and large molecular aggregates that are assembled by reversible and highly directional noncovalent interactions, have attracted more and more attention due to their fascinating and unconventional chemical and physical properties that are different from those of traditional architectures encountered by covalently linked backbones. Supramolecular complexes are by nature dynamic architectures considering the reversibility of non… Show more

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Cited by 219 publications
(88 citation statements)
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“…The interest for stimuli‐responsive self‐assembled “soft” molecular materials has been steadily increasing over the past decade . This increasing attention can be easily explained by the large variety of applications currently envisioned for adaptive/self‐healable dynamic supramolecular assemblies in material science, catalysis, sensing and electronics.…”
Section: Introductionmentioning
confidence: 99%
“…The interest for stimuli‐responsive self‐assembled “soft” molecular materials has been steadily increasing over the past decade . This increasing attention can be easily explained by the large variety of applications currently envisioned for adaptive/self‐healable dynamic supramolecular assemblies in material science, catalysis, sensing and electronics.…”
Section: Introductionmentioning
confidence: 99%
“…Supramolecular assemblies are ubiquitous in living systems. The best known example is most probably DNA, wherein simple molecular building blocks are organized into functional structures via a complex network of orthogonal noncovalent bonds . In more general terms, biologically relevant supramolecules have been an endless and exciting source of inspiration for designing self‐assembled supramolecular polymers with tailored structural, dynamic and functional features.…”
Section: Introductionmentioning
confidence: 99%
“…The solid state behaviors of molecules are largely governed by weak interactions, such as, hydrogen bonding and van der Waals interactions, and the prediction of these behaviors is an important goal of supramolecular chemistry (Schmidt et al, 2014[21]; Hu et al, 2014[12]; Tanaka et al, 2014[25]). Hirshfeld surface analysis (Spackman and Jayatilaka, 2009[24]) is an important tool for studying the solid state behaviors of molecules, and allows the different interactions in crystals to be visualized.…”
Section: Introductionmentioning
confidence: 99%