Issue 40, 2016

Reorientation mechanisms of block copolymer/CdSe quantum dot composites under application of an electric field

Abstract

Time- and temperature-resolved in situ birefringence measurements were applied to analyze the effect of nanoparticles on the electric field-induced alignment of a microphase separated solution of poly(styrene)-block-poly(isoprene) in toluene. Through the incorporation of isoprene-confined CdSe quantum dots the reorientation behavior is altered. Particle loading lowers the order–disorder transition temperature, and increases the defect density, favoring nucleation and growth as an alignment mechanism over rotation of grains. The temperature dependent alteration in the reorientation mechanism is analyzed via a combination of birefringence and synchrotron SAXS. The detailed understanding of the effect of nanoparticles on the reorientation mechanism is an important prerequisite for optimization of electric-field-induced alignment of block copolymer/nanoparticle composites where the block copolymer guides the nanoparticle self-assembly into anisotropic structures.

Graphical abstract: Reorientation mechanisms of block copolymer/CdSe quantum dot composites under application of an electric field

Supplementary files

Article information

Article type
Paper
Submitted
08 May 2016
Accepted
05 Sep 2016
First published
06 Sep 2016
This article is Open Access
Creative Commons BY license

Soft Matter, 2016,12, 8417-8424

Reorientation mechanisms of block copolymer/CdSe quantum dot composites under application of an electric field

C. C. Kathrein, C. Pester, M. Ruppel, M. Jung, M. Zimmermann and A. Böker, Soft Matter, 2016, 12, 8417 DOI: 10.1039/C6SM01073C

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