In this paper we present the smallest artificial light-driven molecular motor consisting of only 28 carbon and 24 hydrogen atoms. The concept of controlling directionality of rotary movement at the molecular level by introduction of a stereogenic center next to the central olefinic bond of a sterically overcrowded alkene does not only hold for molecular motors with six-membered rings, but is also applicable to achieve the unidirectional movement for molecular motors having five-membered rings. Although X-ray analyses show that the five-membered rings in the cis- and trans-isomer of the new molecular motor are nearly flat, the energy differences between the (pseudo-)diaxial and (pseudo-)diequatorial conformations of the methyl substituents i...
The introduction of bulky substituents at the stereogenic center of light-driven second-generation m...
A study is presented on the control of rotary motion of an appending rotor unit in a light-driven mo...
Artificial molecular motors hold great promise for application in responsive functional materials as...
In this paper we present the smallest artificial light-driven molecular motor consisting of only 28 ...
In this paper we present the smallest artificial light-driven molecular motor consisting of only 28 ...
In this paper we present the smallest artificial light-driven molecular motor consisting of only 28 ...
In this paper we present the smallest artificial light-driven molecular motor consisting of only 28 ...
In this paper we present the smallest artificial light-driven molecular motor consisting of only 28 ...
In this paper we present the smallest artificial light-driven molecular motor consisting of only 28 ...
Facing the challenge to construct nanoscale machines, it has been noted that molecular motors stand ...
Molecular motors can be defined as molecules that are able to convert any type of energy input (a fu...
Molecular motors can be defined as molecules that are able to convert any type of energy input (a fu...
Molecular motors can be defined as molecules that are able to convert any type of energy input (a fu...
Molecular motors can be defined as molecules that are able to convert any type of energy input (a fu...
A study is presented on the control of rotary motion of an appending rotor unit in a light-driven mo...
The introduction of bulky substituents at the stereogenic center of light-driven second-generation m...
A study is presented on the control of rotary motion of an appending rotor unit in a light-driven mo...
Artificial molecular motors hold great promise for application in responsive functional materials as...
In this paper we present the smallest artificial light-driven molecular motor consisting of only 28 ...
In this paper we present the smallest artificial light-driven molecular motor consisting of only 28 ...
In this paper we present the smallest artificial light-driven molecular motor consisting of only 28 ...
In this paper we present the smallest artificial light-driven molecular motor consisting of only 28 ...
In this paper we present the smallest artificial light-driven molecular motor consisting of only 28 ...
In this paper we present the smallest artificial light-driven molecular motor consisting of only 28 ...
Facing the challenge to construct nanoscale machines, it has been noted that molecular motors stand ...
Molecular motors can be defined as molecules that are able to convert any type of energy input (a fu...
Molecular motors can be defined as molecules that are able to convert any type of energy input (a fu...
Molecular motors can be defined as molecules that are able to convert any type of energy input (a fu...
Molecular motors can be defined as molecules that are able to convert any type of energy input (a fu...
A study is presented on the control of rotary motion of an appending rotor unit in a light-driven mo...
The introduction of bulky substituents at the stereogenic center of light-driven second-generation m...
A study is presented on the control of rotary motion of an appending rotor unit in a light-driven mo...
Artificial molecular motors hold great promise for application in responsive functional materials as...