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  5. Directions in peptide interfacial science

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Article
en
2006

Directions in peptide interfacial science

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0 Files

en
2006
Vol 1 (2)
Vol. 1
DOI: 10.1116/1.2194033

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Gabor Somorjai
Gabor Somorjai

University of California, Berkeley

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Ozzy Mermut
Roger L. York
Diana Phillips
+3 more

Abstract

The evolution of biological surface science can be credited to the development of traditional surface-chemistry tools and techniques to investigate molecular and atomic-scale bonding, structure, conformation, physical properties (e.g., chemical, electronic, mechanical), and dynamics of adsorbates at various interfaces:1 Both classical measurements of surface behavior and features (i.e., adsorption isotherms, surface areas, roughness, thickness, and topography) and modern spectroscopic-based techniques that provide information on elemental composition, oxidation state, depth profiling, and distribution of chemical species have shown applicability to the study of biomolecular interactions.1 However, experiments that probe with electrons, atoms or ions require ultrahigh vacuum (UHV) or reduced pressures at the interface, and are thus intrinsically limited with regards to interfacial explorations in an aqueous environment, i.e., the study of at biomolecules the solid/water interface.1

How to cite this publication

Ozzy Mermut, Roger L. York, Diana Phillips, Keith R. McCrea, Robert S. Ward, Gabor Somorjai (2006). Directions in peptide interfacial science. , 1(2), DOI: https://doi.org/10.1116/1.2194033.

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Publication Details

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Article

Year

2006

Authors

6

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0

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0

Language

en

DOI

https://doi.org/10.1116/1.2194033

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