Typically, the morphologies of the self-assembled nanostructures from block copolymers are limited to spherical micelles, wormlike micelles and vesicles. Herein, we report a new generation of materials with unique shape and structures, cylindrical soft matter particles (tubisomes), obtained from the hierarchical self-assembly of cyclic peptide-bridged amphiphilic diblock copolymers. Additionally, the capacity of obtained photo-responsive tubisomes as potential drug carriers is evaluated. The supramolecular tubisomes described here paves an alternative way for fabricating polymeric tubular structures, and will expand the toolbox for the rational design of functional hierarchical nanostructures
Polymer self-assembly and co-assembly have emerged as a powerful platform for the fabrication of fun...
The self-assembly in diblock copolymer-based supramolecules, obtained by hydrogen bonding short side...
Ring opening metathesis polymerization (ROMP) was used to generate a variety of self-assembled nanos...
The properties and structures of viruses are directly related to the three‐dimensional structure of ...
The construction of precise soft matter nanostructures in solution presents a challenge. A key focus...
Ordered supramolecular polymers are one-dimensional (1D) nanostructures formed by spontaneous associ...
Amphiphilic block copolymers are nanoscale building blocks that have the ability to self-assemble in...
The synthesis and self-assembly of pH-responsive, amphiphilic cyclic peptide-polymer conjugates are ...
The design of functional systems with sizes in the nanometer range is a key challenge in fields such...
Abstract The work performed by supramolecular polymers, such as microtubules and actin filaments, su...
Abstract The work performed by supramolecular polymers, such as microtubules and actin filaments, su...
Abstract The work performed by supramolecular polymers, such as microtubules and actin filaments, su...
Abstract The work performed by supramolecular polymers, such as microtubules and actin filaments, su...
Self-assembling cyclic peptides (CP) consisting of amino acids with alternating D- and L-chirality f...
The self-assembly in diblock copolymer-based supramolecules, obtained by hydrogen bonding short side...
Polymer self-assembly and co-assembly have emerged as a powerful platform for the fabrication of fun...
The self-assembly in diblock copolymer-based supramolecules, obtained by hydrogen bonding short side...
Ring opening metathesis polymerization (ROMP) was used to generate a variety of self-assembled nanos...
The properties and structures of viruses are directly related to the three‐dimensional structure of ...
The construction of precise soft matter nanostructures in solution presents a challenge. A key focus...
Ordered supramolecular polymers are one-dimensional (1D) nanostructures formed by spontaneous associ...
Amphiphilic block copolymers are nanoscale building blocks that have the ability to self-assemble in...
The synthesis and self-assembly of pH-responsive, amphiphilic cyclic peptide-polymer conjugates are ...
The design of functional systems with sizes in the nanometer range is a key challenge in fields such...
Abstract The work performed by supramolecular polymers, such as microtubules and actin filaments, su...
Abstract The work performed by supramolecular polymers, such as microtubules and actin filaments, su...
Abstract The work performed by supramolecular polymers, such as microtubules and actin filaments, su...
Abstract The work performed by supramolecular polymers, such as microtubules and actin filaments, su...
Self-assembling cyclic peptides (CP) consisting of amino acids with alternating D- and L-chirality f...
The self-assembly in diblock copolymer-based supramolecules, obtained by hydrogen bonding short side...
Polymer self-assembly and co-assembly have emerged as a powerful platform for the fabrication of fun...
The self-assembly in diblock copolymer-based supramolecules, obtained by hydrogen bonding short side...
Ring opening metathesis polymerization (ROMP) was used to generate a variety of self-assembled nanos...