Allosteric control, one of Nature’s most effective ways to regulate functions in biomolecular machinery, involves the transfer of information between distant sites. The mechanistic details of such a transfer are still object of intensive investigation and debate, and the idea that the intramolecular communication could be enabled by dynamic processes is gaining attention as a complement to traditional explanations. Mechanically interlocked molecules, owing to the particular kind of connection between their components and the resulting dynamic behavior, are attractive systems to investigate allosteric mechanisms and exploit them to develop functionalities with artificial species. We show that the pKa of an ammonium site located on the axle c...
The ability to control photoinduced charge transfer within molecules represents a major challenge re...
This communication describes the base- and acid-induced fivestate translational isomerization of a [...
open7noWe exploit a reversible acid-base triggered molecular shuttling process to switch an appropri...
Allosteric control, one of Nature’s most effective ways to regulate functions in biomolecular machin...
The mechanical interlocking of molecular components can lead to the appearance of novel and unconven...
We developed an acid–base switchable molecular shuttle based on a [2]rotaxane, incorporating stable ...
In this study, the crown/ammonium [3]rotaxane R2 is reported which allows a switchable synchronisati...
This research was financially supported by the Netherlands Organization for the Advancement of Resea...
The interlocking of ring and axle molecular components in rotaxanes provides a way to combine chromo...
Functional molecules such as proteins and enzymes are the basis for a plethora of complex biochemica...
Are they still electrifying? Electrochemically switchable rotaxanes are well known for their ability...
We report on catalysis by a fuel-induced transient state of a synthetic molecular machine. A [2]rota...
Mechanistic understanding of the translational movements in molecular switches is essential for desi...
The back and forth motions of a crown-ether based wheel along the axis of a bistable rotaxane are tr...
We report how the nanoconfined environment, introduced by the mechanical bonds within an electrochem...
The ability to control photoinduced charge transfer within molecules represents a major challenge re...
This communication describes the base- and acid-induced fivestate translational isomerization of a [...
open7noWe exploit a reversible acid-base triggered molecular shuttling process to switch an appropri...
Allosteric control, one of Nature’s most effective ways to regulate functions in biomolecular machin...
The mechanical interlocking of molecular components can lead to the appearance of novel and unconven...
We developed an acid–base switchable molecular shuttle based on a [2]rotaxane, incorporating stable ...
In this study, the crown/ammonium [3]rotaxane R2 is reported which allows a switchable synchronisati...
This research was financially supported by the Netherlands Organization for the Advancement of Resea...
The interlocking of ring and axle molecular components in rotaxanes provides a way to combine chromo...
Functional molecules such as proteins and enzymes are the basis for a plethora of complex biochemica...
Are they still electrifying? Electrochemically switchable rotaxanes are well known for their ability...
We report on catalysis by a fuel-induced transient state of a synthetic molecular machine. A [2]rota...
Mechanistic understanding of the translational movements in molecular switches is essential for desi...
The back and forth motions of a crown-ether based wheel along the axis of a bistable rotaxane are tr...
We report how the nanoconfined environment, introduced by the mechanical bonds within an electrochem...
The ability to control photoinduced charge transfer within molecules represents a major challenge re...
This communication describes the base- and acid-induced fivestate translational isomerization of a [...
open7noWe exploit a reversible acid-base triggered molecular shuttling process to switch an appropri...