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Gregory S McCarty

Publications and source records attributed to Gregory S McCarty.

2 recordsLinked to original sources

Formation and manipulation of protopolymer chains.

We define "protopolymer" to mean that the monomer units of a polymer are together and aligned, but are not yet reacted to their final form, the polymer. We have created, observed, and manipulated this new chemical state in linear chains of phenylene on Cu[111] at low temperature. We demonstrate that protopolyphenylene forms by manipulating individual monomer units out of the chains using a scanning tunneling microscope. Both the bare and the phenylene-covered Cu[111] surface can serve as an extended catalytic active site to bring together and to align the monomer phenylene units formed from the dissociative chemisorption of p-diiodobenzene. When short segments of protopolymer chains are moved on the phenylene-covered surface, the intermolecular interactions are sufficiently strong to realign the chains in new locations. The alignment due to these interactions may be used in the controlled growth and assembly, as well as for the simplified manipulation of complex, hierarchical structures.

Journal Article↗

Substrate-mediated interactions and intermolecular forces between molecules adsorbed on surfaces.

Adsorbate interactions and reactions on metal surfaces have been investigated using scanning tunneling microscopy. The manners in which adsorbates perturb the surface electronic structure in their vicinity are discussed. The effects these perturbations have on other molecules are shown to be important in overlayer growth. Interactions of molecules with surface steps are addressed, and each molecule's electron affinity is shown to dictate its adsorption sites at step edges. Standing waves emanating from steps are demonstrated to effect transient molecular adsorption up to 40 A away from the step edge. Halobenzene derivatives are used to demonstrate how the surface is important in aligning reactive intermediates.

Adsorption↗