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  5. Trapping in dendrimers and regular hyperbranched polymers

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Article
English
2012

Trapping in dendrimers and regular hyperbranched polymers

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English
2012
The Journal of Chemical Physics
Vol 137 (4)
DOI: 10.1063/1.4737635

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Guanrong Chen
Guanrong Chen

City University Of Hong Kong

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Bin Wu
L. Yuan
Zhongzhi Zhang
+1 more

Abstract

Dendrimers and regular hyperbranched polymers are two classic families of macromolecules, which can be modeled by Cayley trees and Vicsek fractals, respectively. In this paper, we study the trapping problem in Cayley trees and Vicsek fractals with different underlying geometries, focusing on a particular case with a perfect trap located at the central node. For both networks, we derive the exact analytic formulas in terms of the network size for the average trapping time (ATT)—the average of node-to-trap mean first-passage time over the whole networks. The obtained closed-form solutions show that for both Cayley trees and Vicsek fractals, the ATT display quite different scalings with various system sizes, which implies that the underlying structure plays a key role on the efficiency of trapping in polymer networks. Moreover, the dissimilar scalings of ATT may allow to differentiate readily between dendrimers and hyperbranched polymers.

How to cite this publication

Bin Wu, L. Yuan, Zhongzhi Zhang, Guanrong Chen (2012). Trapping in dendrimers and regular hyperbranched polymers. The Journal of Chemical Physics, 137(4), DOI: 10.1063/1.4737635.

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Publication Details

Type

Article

Year

2012

Authors

4

Datasets

0

Total Files

0

Language

English

Journal

The Journal of Chemical Physics

DOI

10.1063/1.4737635

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