Natural systems transfer chiral information across multiple length scales through dynamic supramolecular interaction to accomplish various functions. Inspired by nature, many exquisite artificial supramolecular systems have been developed, in which controlling the supramolecular chirality holds the key to completing specific tasks. However, to achieve precise and non-invasive control and modulation of chirality in these systems remains challenging. As a non-invasive stimulus, light can be used to remotely control the chirality with high spatiotemporal precision. In contrast to common molecular switches, a synthetic molecular motor can act as a multistate chiroptical switch with unidirectional rotation, offering major potential to regulate m...
The field of dynamic functional molecular systems has progressed enormously over the past few decade...
Controlling sophisticated motion by molecular motors is a major goal on the road to future actuators...
Molecular photoactuators can control shape and chemical or physical properties of the responsive sys...
Natural systems transfer chiral information across multiple length scales through dynamic supramolec...
Photoresponsive supramolecular polymers are well-organized assemblies containing photosensitive mole...
Helicity switching in biological and artificial systems is a fundamental process that allows for the...
Molecular machines operated by light have been recently shown to be able to produce oriented motion ...
Control over the preferred helical sense of a poly(n-hexyl isocyanate) (PHIC) by using a single ligh...
My research concentrated on the amplification of chirality. This means that a chiral molecule (which...
In nature, key molecular processes such as communication, replication, and enzyme catalysis all rely...
Technology is omnipresent in our modern-day society and it is hard to imagine a world without machin...
In nature, key molecular processes such as communication, replication, and enzyme catalysis all rely...
The field of dynamic functional molecular systems has progressed enormously over the past few decade...
Controlling sophisticated motion by molecular motors is a major goal on the road to future actuators...
Molecular photoactuators can control shape and chemical or physical properties of the responsive sys...
Natural systems transfer chiral information across multiple length scales through dynamic supramolec...
Photoresponsive supramolecular polymers are well-organized assemblies containing photosensitive mole...
Helicity switching in biological and artificial systems is a fundamental process that allows for the...
Molecular machines operated by light have been recently shown to be able to produce oriented motion ...
Control over the preferred helical sense of a poly(n-hexyl isocyanate) (PHIC) by using a single ligh...
My research concentrated on the amplification of chirality. This means that a chiral molecule (which...
In nature, key molecular processes such as communication, replication, and enzyme catalysis all rely...
Technology is omnipresent in our modern-day society and it is hard to imagine a world without machin...
In nature, key molecular processes such as communication, replication, and enzyme catalysis all rely...
The field of dynamic functional molecular systems has progressed enormously over the past few decade...
Controlling sophisticated motion by molecular motors is a major goal on the road to future actuators...
Molecular photoactuators can control shape and chemical or physical properties of the responsive sys...