Molecular Self-Assembly and Nanochemistry: a Chemical Strategy for the Synthesis of Nanostructures

George M. Whitesides, John P. Mathias, Christopher T. Seto

1991Published
3.3KCitations
0References
journal articleType

Abstract

Molecular self-assembly is the spontaneous association of molecules under equilibrium conditions into stable, structurally well-defined aggregates joined by noncovalent bonds. Molecular self-assembly is ubiquitous in biological systems and underlies the formation of a wide variety of complex biological structures. Understanding self-assembly and the associated noncovalent interactions that connect complementary interacting molecular surfaces in biological aggregates is a central concern in structural biochemistry. Self-assembly is also emerging as a new strategy in chemical synthesis, with the potential of generating nonbiological structures with dimensions of 1 to 10 2 nanometers (with molecular weights of 10 4 to 10 10 daltons). Structures in the upper part of this range of sizes are presently inaccessible through chemical synthesis, and the ability to prepare them would open a route to structures comparable in size (and perhaps complementary in function) to those that can be prepared by microlithography and other techniques of microfabrication.

Journal: Science

Publisher: American Association for the Advancement of Science (AAAS)

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