Here, we report the mechanisms of chiral transfer at various length scales in the self-assembly of enantiomeric chiral block copolymers (BCPs*). We show the evolution of homochirality from molecular chirality into phase chirality in the self-assembly of the BCPs*. The chirality of the molecule in the BCP* is identified from circular dichroism (CD) spectra, while the handedness of the helical conformation in the BCP* is determined from a split-type Cotton effect in vibrational circular dichroism spectra. Microphase separation of the BCP* is exploited to form a helical (H*) phase, and the handedness of helical nanostructure in the BCP* is directly visualized from transmission electron microscopy tomography. As examined by CD and fluorescence ...
Chiral inorganic nanomaterials are of great interest because of their excellent optical properties. ...
Unveiling the subtle rules that control the buildup of macroscopic chirality starting from chiral mo...
Chiral inorganic nanomaterials are of great interest because of their excellent optical properties. ...
Here, we report the mechanisms of chiral transfer at various length scales in the self-assembly of e...
Abstract Chiral structures not only exist in nature widely, they also emerge in artificial systems, ...
Chirality transfer from molecule to assembly is a ubiquitous process, occurring in every class of se...
The phase behavior of chiral block copolymers (BCPs*), namely, BCPs with at least one of the constit...
Transfer of molecular chirality to supramolecular chirality at nanoscale and microscale by chemical ...
Unraveling the chirality transfer mechanism is the key to governing chiral expression and structure–...
Propagation and amplification of chirality are considered to play an important role in the chemical ...
The formation of chiral nanostructures from the self-assembly of achiral building blocks without ext...
Unveiling the subtle rules that control the buildup of macroscopic chirality starting from chiral mo...
Directing the supramolecular polymerization towards a preferred type of organization is extremely im...
Unveiling the subtle rules that control the buildup of macroscopic chirality starting from chiral mo...
Copyright © 2018 American Chemical Society. The supramolecular organization and chiral expression in...
Chiral inorganic nanomaterials are of great interest because of their excellent optical properties. ...
Unveiling the subtle rules that control the buildup of macroscopic chirality starting from chiral mo...
Chiral inorganic nanomaterials are of great interest because of their excellent optical properties. ...
Here, we report the mechanisms of chiral transfer at various length scales in the self-assembly of e...
Abstract Chiral structures not only exist in nature widely, they also emerge in artificial systems, ...
Chirality transfer from molecule to assembly is a ubiquitous process, occurring in every class of se...
The phase behavior of chiral block copolymers (BCPs*), namely, BCPs with at least one of the constit...
Transfer of molecular chirality to supramolecular chirality at nanoscale and microscale by chemical ...
Unraveling the chirality transfer mechanism is the key to governing chiral expression and structure–...
Propagation and amplification of chirality are considered to play an important role in the chemical ...
The formation of chiral nanostructures from the self-assembly of achiral building blocks without ext...
Unveiling the subtle rules that control the buildup of macroscopic chirality starting from chiral mo...
Directing the supramolecular polymerization towards a preferred type of organization is extremely im...
Unveiling the subtle rules that control the buildup of macroscopic chirality starting from chiral mo...
Copyright © 2018 American Chemical Society. The supramolecular organization and chiral expression in...
Chiral inorganic nanomaterials are of great interest because of their excellent optical properties. ...
Unveiling the subtle rules that control the buildup of macroscopic chirality starting from chiral mo...
Chiral inorganic nanomaterials are of great interest because of their excellent optical properties. ...