Distributions of Parameters and Features of Multiple Bond Ruptures in Force Spectroscopy by Atomic Force Microscopy

dc.contributor.author

Guo, S

dc.contributor.author

Li, N

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Lad, N

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Desai, S

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Akhremitchev, BB

dc.date.accessioned

2011-06-21T17:26:38Z

dc.date.available

2011-06-21T17:26:38Z

dc.date.issued

2010

dc.description.abstract

Force spectroscopy measurement of rupture forces of bound molecules becomes an important physicochemical tool in characterizing intermolecular interactions, Atomic force microscopy (AFM) measurements are among the most common approaches in implementation of this technique. Kinetic information about the molecular bond under study is usually extracted assuming that the detected rupture force comes from rupturing of a single bond. However, multiple bond ruptures might occur in experiments. In this article, we consider how the presence of multiple bonds is manifested in the distribution of parameters that are typically extracted in force spectroscopy experiments. Of particular interest here are the distributions of rupture forces and Kuhn lengths of polymeric tethers. We show that multiple bond ruptures might contribute to the measured distributions even when these distributions have a well-defined single peak. Also, we consider how the probability to form multiple bonds depends on probe velocity. The developed analytical models are applied to experimental data of biotin streptavidin ruptures. The velocity dependence of the amplitude of high force tail supports the hypothesis of multiple bond nature of the measured high forces.

dc.description.version

Version of Record

dc.identifier.citation

Guo,Senli;Li,Nan;Lad,Nimit;Desai,Shivam;Akhremitchev,Boris B.. 2010. Distributions of Parameters and Features of Multiple Bond Ruptures in Force Spectroscopy by Atomic Force Microscopy. Journal of Physical Chemistry C 114(19): 8755-8765.

dc.identifier.issn

1932-7447

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https://hdl.handle.net/10161/4065

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en_US

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American Chemical Society (ACS)

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10.1021/jp100543u

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Journal of Physical Chemistry C

dc.subject

molecular adhesion

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systematic-errors

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energy landscapes

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single

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kinetics

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biotin

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afm

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strength

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dissociation

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mechanics

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chemistry, physical

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nanoscience & nanotechnology

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materials science, multidisciplinary

dc.title

Distributions of Parameters and Features of Multiple Bond Ruptures in Force Spectroscopy by Atomic Force Microscopy

dc.title.alternative
dc.type

Other article

duke.date.pubdate

2010-5-20

duke.description.issue

19

duke.description.volume

114

pubs.begin-page

8755

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