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Inside Cover Adsorption Diffusion and Self-Assembly of an Engineered Gold-Binding Peptide on Au(111) Investigated by Atomic Force Microscopy (Angew. Chem. Int. Ed

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The
binding, diffusion, and aggregation mechanism …
… of an engineered binding peptide on Au(111), showing non-equilibrium surface
structures that lead to the formation of a confluent monolayer, is described by M.
Sarikaya et al. in their Communication on page 5174 ff. The observed dynamic structural
evolution involving the surface diffusion of peptides and multiple stages of molecular
thin film topology are explained. Ersin Emre Oren is thanked for the design of the
graphic.
Inside Cover
Christopher R. So, Candan Tamerler, and Mehmet Sarikaya*
The binding, diffusion, and aggregation mechanism of an engineered binding peptide
on Au(111), showing non-equilibrium surface structures that lead to the formation of
a confluent monolayer, is described by M. Sarikaya et al. in their Communication on
page 5174 ff. The observed dynamic structural evolution involving the surface
diffusion of peptides and multiple stages of molecular thin film topology are
explained. Ersin Emre Oren is thanked for the design of the graphic.
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self, engineer, investigated, 111, diffusion, int, cover, angel, assembly, chem, adsorption, microscopy, gold, atomic, insider, force, binding, peptide
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