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  5. Tetrapod Nanocrystals as Fluorescent Stress Probes of Electrospun Nanocomposites

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Article
English
2013

Tetrapod Nanocrystals as Fluorescent Stress Probes of Electrospun Nanocomposites

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English
2013
Nano Letters
Vol 13 (8)
DOI: 10.1021/nl401999t

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Robert O. Ritchie
Robert O. Ritchie

University of California, Berkeley

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Shilpa N. Raja
Andrew C. K. Olson
Kari Thorkelsson
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Abstract

A nanoscale, visible-light, self-sensing stress probe would be highly desirable in a variety of biological, imaging, and materials engineering applications, especially a device that does not alter the mechanical properties of the material it seeks to probe. Here we present the CdSe–CdS tetrapod quantum dot, incorporated into polymer matrices via electrospinning, as an in situ luminescent stress probe for the mechanical properties of polymer fibers. The mechanooptical sensing performance is enhanced with increasing nanocrystal concentration while causing minimal change in the mechanical properties even up to 20 wt % incorporation. The tetrapod nanoprobe is elastic and recoverable and undergoes no permanent change in sensing ability even upon many cycles of loading to failure. Direct comparisons to side-by-side traditional mechanical tests further validate the tetrapod as a luminescent stress probe. The tetrapod fluorescence stress–strain curve shape matches well with uniaxial stress–strain curves measured mechanically at all filler concentrations reported.

How to cite this publication

Shilpa N. Raja, Andrew C. K. Olson, Kari Thorkelsson, Andrew J. Luong, Lillian Hsueh, Guoqing Chang, Bernd Gludovatz, Liwei Lin, Ting Xu, Robert O. Ritchie, A. Paul Alivisatos (2013). Tetrapod Nanocrystals as Fluorescent Stress Probes of Electrospun Nanocomposites. Nano Letters, 13(8), pp. 3915-3922, DOI: 10.1021/nl401999t.

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Publication Details

Type

Article

Year

2013

Authors

11

Datasets

0

Total Files

0

Language

English

Journal

Nano Letters

DOI

10.1021/nl401999t

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