Artificial molecular motors hold great promise for application in responsive functional materials as well as to control the properties of biohybrid systems. Herein a strategy is reported to modulate the rotation of light-driven molecular motors. That is, the rotary speed of a molecular motor, functionalized with a biphenol moiety, could be decreased in situ by non-covalent substrate binding, as was established by (HNMR)-H-1 and UV/Vis spectroscopy. These findings constitute an important step in the development of multi-responsive molecular machinery
Reducing the steric interaction between the upper-half and the lower-half of a light-driven rotary m...
The design and synthesis of a synthetic system that aims for the direct visualization of a synthetic...
Molecular motors can be defined as molecules that are able to convert any type of energy input (a fu...
Artificial molecular motors hold great promise for application in responsive functional materials as...
The ability to induce and amplify motion at the molecular scale has seen tremendous progress ranging...
Controlled intramolecular movement and coupling of motor and rotor functions is exerted by this new ...
Controlled intramolecular movement and coupling of motor and rotor functions is exerted by this new ...
A study is presented on the control of rotary motion of an appending rotor unit in a light-driven mo...
A study is presented on the control of rotary motion of an appending rotor unit in a light-driven mo...
The field of dynamic functional molecular systems has progressed enormously over the past few decade...
The introduction of mechanical functions and controlled motion based on molecular motors and machine...
In order to improve the rotary motion of surface assembled light-driven molecular motors, tetra-acid...
Facing the challenge to construct nanoscale machines, it has been noted that molecular motors stand ...
The design of a multicomponent system that aims at the direct visualization of a synthetic rotary mo...
Synthetic molecular machines hold tremendous potential to revolutionize chemical and materials scien...
Reducing the steric interaction between the upper-half and the lower-half of a light-driven rotary m...
The design and synthesis of a synthetic system that aims for the direct visualization of a synthetic...
Molecular motors can be defined as molecules that are able to convert any type of energy input (a fu...
Artificial molecular motors hold great promise for application in responsive functional materials as...
The ability to induce and amplify motion at the molecular scale has seen tremendous progress ranging...
Controlled intramolecular movement and coupling of motor and rotor functions is exerted by this new ...
Controlled intramolecular movement and coupling of motor and rotor functions is exerted by this new ...
A study is presented on the control of rotary motion of an appending rotor unit in a light-driven mo...
A study is presented on the control of rotary motion of an appending rotor unit in a light-driven mo...
The field of dynamic functional molecular systems has progressed enormously over the past few decade...
The introduction of mechanical functions and controlled motion based on molecular motors and machine...
In order to improve the rotary motion of surface assembled light-driven molecular motors, tetra-acid...
Facing the challenge to construct nanoscale machines, it has been noted that molecular motors stand ...
The design of a multicomponent system that aims at the direct visualization of a synthetic rotary mo...
Synthetic molecular machines hold tremendous potential to revolutionize chemical and materials scien...
Reducing the steric interaction between the upper-half and the lower-half of a light-driven rotary m...
The design and synthesis of a synthetic system that aims for the direct visualization of a synthetic...
Molecular motors can be defined as molecules that are able to convert any type of energy input (a fu...