Molecular, Supramolecular, and Macromolecular Motors and Artificial Muscles

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Recent developments in chemical synthesis, nanoscale assembly, and molecular-scale measurements enable the extension of the concept of macroscopic machines to the molecular and supramolecular levels. Molecular machines are capable of performing mechanical movements in response to external stimuli. They offer the potential to couple electrical or other forms of energy to mechanical action at the nano- and molecular scales. Working hierarchically and in concert, they can form actuators referred to as artificial muscles, in analogy to biological systems. We describe the principles behind driven motion and assembly at the molecular scale and recent advances in the field of molecular-level electromechanical machines, molecular motors, and artificial muscles. We discuss the challenges and successes in making these assemblies work cooperatively to function at larger scales.
Publisher
MATERIALS RESEARCH SOC
Issue Date
2009-09
Language
English
Article Type
Review
Keywords

CARBON NANOTUBE ACTUATORS; SCANNING-TUNNELING-MICROSCOPY; SELF-ASSEMBLED MONOLAYERS; NANOWIRE BUILDING-BLOCKS; ELECTRONIC DEVICES; SINGLE MOLECULES; DONOR-ACCEPTOR; LOGIC GATES; MACHINES; CONDUCTANCE

Citation

MRS BULLETIN, v.34, no.9, pp.671 - 681

ISSN
0883-7694
DOI
10.1557/mrs2009.179
URI
http://hdl.handle.net/10203/94258
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