Natural molecular motors such as ATP synthase, myosin, kinesin and dynein can convert conformationalchanges, due to chemical energy input, into directed motion for catalysis and transport. Preparing artificial molecular motors and making them work at different scales (from nano to macroscopic scale) have been long-term challenges. Herein we designed and synthesized a light driven rotary molecular motor in highly enantiopure form and in gram scale. This motor is featured by two orthogonal functionalities on its upper and lower part, allowing its further integration into polymeric materials. By performing click reaction under different concentration conditions, either an eight shaped motor-polymer conjugate or a gel containing motors as retic...
Biological molecular machines enable chemical transformations, assembly, replication and motility, b...
The ability to induce and amplify motion at the molecular scale has seen tremendous progress ranging...
The ability to induce and amplify motion at the molecular scale has seen tremendous progress ranging...
Natural molecular motors such as ATP synthase, myosin, kinesin and dynein can convert conformational...
Dans la nature, des moteurs moléculaires tells que l'ATP synthase ou la kinésine peuvent consommer d...
The last twenty years have seen tremendous progresses in the design and synthesis of complex molecul...
This manuscript describes the gram-scale synthesis of a light-driven rotary molecular motor. It is s...
This manuscript describes the gram-scale synthesis of a light-driven rotary molecular motor. It is s...
This manuscript describes the gram-scale synthesis of a light-driven rotary molecular motor. It is s...
This manuscript describes the gram-scale synthesis of a light-driven rotary molecular motor. It is s...
This manuscript describes the gram-scale synthesis of a light-driven rotary molecular motor. It is s...
This manuscript describes the gram-scale synthesis of a light-driven rotary molecular motor. It is s...
This manuscript describes the gram-scale synthesis of a light-driven rotary molecular motor. It is s...
The research is focused on increasing the understanding of the mechanism of rotation of light-driven...
The ability to induce and amplify motion at the molecular scale has seen tremendous progress ranging...
Biological molecular machines enable chemical transformations, assembly, replication and motility, b...
The ability to induce and amplify motion at the molecular scale has seen tremendous progress ranging...
The ability to induce and amplify motion at the molecular scale has seen tremendous progress ranging...
Natural molecular motors such as ATP synthase, myosin, kinesin and dynein can convert conformational...
Dans la nature, des moteurs moléculaires tells que l'ATP synthase ou la kinésine peuvent consommer d...
The last twenty years have seen tremendous progresses in the design and synthesis of complex molecul...
This manuscript describes the gram-scale synthesis of a light-driven rotary molecular motor. It is s...
This manuscript describes the gram-scale synthesis of a light-driven rotary molecular motor. It is s...
This manuscript describes the gram-scale synthesis of a light-driven rotary molecular motor. It is s...
This manuscript describes the gram-scale synthesis of a light-driven rotary molecular motor. It is s...
This manuscript describes the gram-scale synthesis of a light-driven rotary molecular motor. It is s...
This manuscript describes the gram-scale synthesis of a light-driven rotary molecular motor. It is s...
This manuscript describes the gram-scale synthesis of a light-driven rotary molecular motor. It is s...
The research is focused on increasing the understanding of the mechanism of rotation of light-driven...
The ability to induce and amplify motion at the molecular scale has seen tremendous progress ranging...
Biological molecular machines enable chemical transformations, assembly, replication and motility, b...
The ability to induce and amplify motion at the molecular scale has seen tremendous progress ranging...
The ability to induce and amplify motion at the molecular scale has seen tremendous progress ranging...