This Thesis explores the topic of large amplitude motion within molecular machines and the different mechanisms and molecular architectures that are exploited in order to achieve control over the relative positions of submolecular components with respect to one another. Chapter One provides a thorough survey of a vast range of molecular switches and machines that have been developed during the last two decades. The focus is on interlocked and non-interlocked systems that display highly controlled large amplitude motion and the principles that govern their operation. Initially, simple molecular switches and shuttles are described with the chapter finally arriving at complex molecular machines such as motors, ratchets and walking mol...
Molecular machines are at the frontier of biology and chemistry. The ability to control molecular mo...
Nature abounds with ingenious nanoscopic machines employed to carry out all of the requisite tasks ...
We developed an acid–base switchable molecular shuttle based on a [2]rotaxane, incorporating stable ...
This Thesis explores the topic of large amplitude motion within molecular machines and the different...
Abstract: Nature uses molecular motors and machines in virtually every significant biologi-cal proce...
Scientists have been trying to shrink large scale technologies into smaller, molecular scales. One s...
In recent years it has been proved possible to design synthetic molecular systems in which positiona...
In mechanically interlocked compounds, such as rotaxanes and catenanes, the molecules are held toget...
In recent years it has been proved possible to design synthetic molecular systems in which positiona...
Molecular machines are synthetic small molecules that could utilize their mechanical movement trigge...
Molecular switches are used as scaffolds for the construction of controlled molecular rotors. The in...
Synthetic molecular machines hold tremendous potential to revolutionize chemical and materials scien...
This thesis presents the design, synthesis and characterization of the [2]pseudorotaxanes and [2]rot...
As our understanding and control of intra- and intermolecular interactions evolve, ever more complex...
Molecular machines are at the frontier of biology and chemistry. The ability to control molecular mo...
Nature abounds with ingenious nanoscopic machines employed to carry out all of the requisite tasks ...
We developed an acid–base switchable molecular shuttle based on a [2]rotaxane, incorporating stable ...
This Thesis explores the topic of large amplitude motion within molecular machines and the different...
Abstract: Nature uses molecular motors and machines in virtually every significant biologi-cal proce...
Scientists have been trying to shrink large scale technologies into smaller, molecular scales. One s...
In recent years it has been proved possible to design synthetic molecular systems in which positiona...
In mechanically interlocked compounds, such as rotaxanes and catenanes, the molecules are held toget...
In recent years it has been proved possible to design synthetic molecular systems in which positiona...
Molecular machines are synthetic small molecules that could utilize their mechanical movement trigge...
Molecular switches are used as scaffolds for the construction of controlled molecular rotors. The in...
Synthetic molecular machines hold tremendous potential to revolutionize chemical and materials scien...
This thesis presents the design, synthesis and characterization of the [2]pseudorotaxanes and [2]rot...
As our understanding and control of intra- and intermolecular interactions evolve, ever more complex...
Molecular machines are at the frontier of biology and chemistry. The ability to control molecular mo...
Nature abounds with ingenious nanoscopic machines employed to carry out all of the requisite tasks ...
We developed an acid–base switchable molecular shuttle based on a [2]rotaxane, incorporating stable ...