A minimal model is presented for helix-coil type transitions in solutions of self-assembled supramolecular polymers. The diagram of states calculated using this model shows that there are essentially two ordering regimes, one where the polymerization transition and the helical transition coincide and one where they are separate. In both regimes a strong coupling exists between the growth and the helical transition of the supramolecular polymers. Comparison of the theory with experimental data confirms that the minimal model provides an adequate description of helix-coil type transitions in self-assembled polymers and that these transitions can be highly cooperative
Using synthetic polypeptides as a model system, the theories of helix-coil transition were developed...
Using synthetic polypeptides as a model system, the theories of helix-coil transition were developed...
Using synthetic polypeptides as a model system, the theories of helix-coil transition were developed...
A minimal model is presented for helix-coil type transitions in solutions of self-assembled supramol...
A minimal model is presented for helix-coil type transitions in solutions of self-assembled supramol...
A minimal model is presented for helix-coil type transitions in solutions of self-assembled supramol...
It has recently been established experimentally that the supramolecular assemblies formed by a parti...
It has recently been established experimentally that the supramolecular assemblies formed by a parti...
It has recently been established experimentally that the supramolecular assemblies formed by a parti...
We explore the coupling between the helix-coil and coil-globule transitions of a helical polymer usi...
It has been stated that ``the class of materials richest in the occurrence of phase transitions are ...
We present a geometric approach to the simulation of the helix−coil transition in wormlike polymers....
\u3cp\u3eUsing synthetic polypeptides as a model system, the theories of helix-coil transition were ...
End effects are known to play a pivotal role in equilibrium polymerization. To investigate their rol...
Using synthetic polypeptides as a model system, the theories of helix-coil transition were developed...
Using synthetic polypeptides as a model system, the theories of helix-coil transition were developed...
Using synthetic polypeptides as a model system, the theories of helix-coil transition were developed...
Using synthetic polypeptides as a model system, the theories of helix-coil transition were developed...
A minimal model is presented for helix-coil type transitions in solutions of self-assembled supramol...
A minimal model is presented for helix-coil type transitions in solutions of self-assembled supramol...
A minimal model is presented for helix-coil type transitions in solutions of self-assembled supramol...
It has recently been established experimentally that the supramolecular assemblies formed by a parti...
It has recently been established experimentally that the supramolecular assemblies formed by a parti...
It has recently been established experimentally that the supramolecular assemblies formed by a parti...
We explore the coupling between the helix-coil and coil-globule transitions of a helical polymer usi...
It has been stated that ``the class of materials richest in the occurrence of phase transitions are ...
We present a geometric approach to the simulation of the helix−coil transition in wormlike polymers....
\u3cp\u3eUsing synthetic polypeptides as a model system, the theories of helix-coil transition were ...
End effects are known to play a pivotal role in equilibrium polymerization. To investigate their rol...
Using synthetic polypeptides as a model system, the theories of helix-coil transition were developed...
Using synthetic polypeptides as a model system, the theories of helix-coil transition were developed...
Using synthetic polypeptides as a model system, the theories of helix-coil transition were developed...
Using synthetic polypeptides as a model system, the theories of helix-coil transition were developed...