In artificial small-molecule machines, molecular motors can be used to perform work on coupled systems by applying a mechanical load—such as strain—that allows for energy transduction. Here, we report how ring strain influences the rotation of a rotary molecular motor. Bridging the two halves of the motor with alkyl tethers of varying sizes yields macrocycles that constrain the motor's movement. Increasing the ring size by two methylene increments increases the mobility of the motor stepwise and allows for fine-tuning of strain in the system. Small macrocycles (8–14 methylene units) only undergo a photochemical E/Z isomerization. Larger macrocycles (16–22 methylene units) can perform a full rotational cycle, but thermal helix inversion is s...
In this paper we present the smallest artificial light-driven molecular motor consisting of only 28 ...
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 artificial small-molecule machines, molecular motors can be used to perform work on coupled syste...
In artificial small-molecule machines, molecular motors can be used to perform work on coupled syste...
In artificial small-molecule machines, molecular motors can be used to perform work on coupled syste...
In artificial small-molecule machines, molecular motors can be used to perform work on coupled syste...
In artificial small-molecule machines, molecular motors can be used to perform work on coupled syste...
In artificial small-molecule machines, molecular motors can be used to perform work on coupled syste...
The field of synthetic molecular machines has quickly evolved in recent years, growing from a fundam...
The field of synthetic molecular machines has quickly evolved in recent years, growing from a fundam...
In this paper we present the smallest artificial light-driven molecular motor consisting of only 28 ...
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 ...
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 artificial small-molecule machines, molecular motors can be used to perform work on coupled syste...
In artificial small-molecule machines, molecular motors can be used to perform work on coupled syste...
In artificial small-molecule machines, molecular motors can be used to perform work on coupled syste...
In artificial small-molecule machines, molecular motors can be used to perform work on coupled syste...
In artificial small-molecule machines, molecular motors can be used to perform work on coupled syste...
In artificial small-molecule machines, molecular motors can be used to perform work on coupled syste...
The field of synthetic molecular machines has quickly evolved in recent years, growing from a fundam...
The field of synthetic molecular machines has quickly evolved in recent years, growing from a fundam...
In this paper we present the smallest artificial light-driven molecular motor consisting of only 28 ...
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 ...
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 ...