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Transition metal-complexed catenane rotaxane

Electrochemically Driven Molecular Machines Based on Transition-metal Complexed Catenanes and Rotaxanes... [Pg.425]

Another area of NEMS that is receiving tremendous attention is the mimicry of biological systems, aptly referred to as biomimetics. For instance, in the development of linear molecular muscles that undergo contraction and extension movements. Initial work in this field utilized transition metal complexes containing rotaxanes and catenanes, due to the nondestructive redox processes occurring on the metal centers.Though these complexes were actuated by a chemical reaction, the movement was in a noncoherent manner. In order to better mimic skeletal muscle movement, one has to look at the mode of motion within the most efficient molecular machines - in our human bodies. [Pg.348]

Transition metal-complexed catenanes and rotaxanes as light-driven molecular machines prototypes 05CL742. [Pg.83]

In this chapter, we will focus on transition metal-based catenanes and rotaxanes. We will restrict ourselves to compounds that are set in motion by an electrochemical signal. Indeed, the electrochemical techniques represent privileged methods for piloting these machines since they contain electroactive transition metal centers or complexes. In addition to triggering the motions, electrochemistry allows to investigate the dynamic properties of the compounds. [Pg.426]


See other pages where Transition metal-complexed catenane rotaxane is mentioned: [Pg.375]    [Pg.352]    [Pg.60]    [Pg.220]    [Pg.244]    [Pg.452]    [Pg.34]    [Pg.76]    [Pg.220]    [Pg.304]    [Pg.375]    [Pg.525]    [Pg.95]   
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Transition metal-complexed catenane

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