Self – assembly is a powerful tool for the construction of highly organized nanostructures. Therefore, the possibility to control and predict pathways of molecular ordering on the nanoscale level is a critical issue for the production of materials with tunable and adaptive macroscopic properties. 2D polymers are attractive objects for the field of material sciences due to their exceptional properties. [1] As shown before, amphiphilic oligopyrenotides (produced via automated solid-phase synthesis) form rod–like supramolecular polymers in water. [2] These assemblies form 1D objects. [3] By applying certain changes to the design of the oligopyrenotide units the dimensionality of the formed assemblies can be influenced. Herein, we demonstrate ...
Supramolecular polymers are class of materials that are formed by non-covalent interactions such as ...
In Chapter 1 supramolecular polymerization of small molecules is introduced and exemplified. The sel...
Multi strand metallo-supramolecular polymers are self assembled by pyridyl-functionalized porphyrin ...
One of the biggest issues of modern materials science is developing of strategies to create large an...
Very important aspects of the modern nanotechnology are control and prediction of arraying patterns ...
The precise arraying of functional entities in a reproducible and predictable way in morphologically...
Supramolecular DNA assembly blends DNA building blocks with synthetic organic molecules giving stru...
The assembly of supramolecular polymers from a phosphodiester‐linked dimeric anthracene is described...
Supramolecular polymers are reversible one-dimensional assemblies, driven by dynamic non-covalent in...
Supramolecular self-assembly in water based on non-covalent bonding is attracting major attention du...
Discrete and multicomponent nanoscale noncovalent assemblies on surfaces featuring polygonal porous ...
Nature uses self-assembly for building supramolecular materials possessing fascinating properties (s...
A grand challenge in materials chemistry is the synthesis of macromolecules and polymers with precis...
This review discusses one-dimensional supramolecular polymers that form in aqueous media. First, nat...
Reversible self-assembly in water of small molecules into ordered structures is an essential process...
Supramolecular polymers are class of materials that are formed by non-covalent interactions such as ...
In Chapter 1 supramolecular polymerization of small molecules is introduced and exemplified. The sel...
Multi strand metallo-supramolecular polymers are self assembled by pyridyl-functionalized porphyrin ...
One of the biggest issues of modern materials science is developing of strategies to create large an...
Very important aspects of the modern nanotechnology are control and prediction of arraying patterns ...
The precise arraying of functional entities in a reproducible and predictable way in morphologically...
Supramolecular DNA assembly blends DNA building blocks with synthetic organic molecules giving stru...
The assembly of supramolecular polymers from a phosphodiester‐linked dimeric anthracene is described...
Supramolecular polymers are reversible one-dimensional assemblies, driven by dynamic non-covalent in...
Supramolecular self-assembly in water based on non-covalent bonding is attracting major attention du...
Discrete and multicomponent nanoscale noncovalent assemblies on surfaces featuring polygonal porous ...
Nature uses self-assembly for building supramolecular materials possessing fascinating properties (s...
A grand challenge in materials chemistry is the synthesis of macromolecules and polymers with precis...
This review discusses one-dimensional supramolecular polymers that form in aqueous media. First, nat...
Reversible self-assembly in water of small molecules into ordered structures is an essential process...
Supramolecular polymers are class of materials that are formed by non-covalent interactions such as ...
In Chapter 1 supramolecular polymerization of small molecules is introduced and exemplified. The sel...
Multi strand metallo-supramolecular polymers are self assembled by pyridyl-functionalized porphyrin ...