Highly birefringent vaterite microspheres: production, characterization and applications for optical micromanipulation

This paper reports on a simple synthesis and characterization of highly birefringent vaterite microspheres, which are composed of 20-30 nm sized nanocrystalls. Scanning electron microscopy shows a quite disordered assembly of nanocrystals within the microspheres. However, using optical tweezers, the...

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Published in:Optics express Vol. 17; no. 24; pp. 21944 - 21955
Main Authors: Parkin, Simon J, Vogel, Robert, Persson, Martin, Funk, Maren, Loke, Vincent L Y, Nieminen, Timo A, Heckenberg, Norman R, Rubinsztein-Dunlop, Halina
Format: Journal Article
Language:English
Published: United States 23-11-2009
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Abstract This paper reports on a simple synthesis and characterization of highly birefringent vaterite microspheres, which are composed of 20-30 nm sized nanocrystalls. Scanning electron microscopy shows a quite disordered assembly of nanocrystals within the microspheres. However, using optical tweezers, the effective birefringence of the microspheres was measured to be Deltan = 0.06, which compares to Deltan = 0.1 of vaterite single crystals. This suggests a very high orientation of the nanocrystals within the microspheres. A hyperbolic model of the direction of the optical axis throughout the vaterite spherulite best fits the experimental data. Results from polarized light microscopy further confirm the hyperbolic model.
AbstractList This paper reports on a simple synthesis and characterization of highly birefringent vaterite microspheres, which are composed of 20-30 nm sized nanocrystalls. Scanning electron microscopy shows a quite disordered assembly of nanocrystals within the microspheres. However, using optical tweezers, the effective birefringence of the microspheres was measured to be Deltan = 0.06, which compares to Deltan = 0.1 of vaterite single crystals. This suggests a very high orientation of the nanocrystals within the microspheres. A hyperbolic model of the direction of the optical axis throughout the vaterite spherulite best fits the experimental data. Results from polarized light microscopy further confirm the hyperbolic model.
This paper reports on a simple synthesis and characterization of highly birefringent vaterite microspheres, which are composed of 20-30 nm sized nanocrystalls. Scanning electron microscopy shows a quite disordered assembly of nanocrystals within the microspheres. However, using optical tweezers, the effective birefringence of the microspheres was measured to Delta n = 0.06, which compares to Delta n = 0.1 of vaterite single crystals. This suggests a very high orientation of the nanocrystals within the microspheres. A hyperbolic model of the direction of the optical axis throughout the vaterite spherulite best fits the experimental data. Results from polarized light microscopy further confirm the hyperbolic model. (C) 2009 Optical Society of America
Author Funk, Maren
Vogel, Robert
Parkin, Simon J
Heckenberg, Norman R
Nieminen, Timo A
Rubinsztein-Dunlop, Halina
Persson, Martin
Loke, Vincent L Y
Author_xml – sequence: 1
  givenname: Simon J
  surname: Parkin
  fullname: Parkin, Simon J
  organization: University of Queensland, School of Mathematics and Physics, Queensland, Australia
– sequence: 2
  givenname: Robert
  surname: Vogel
  fullname: Vogel, Robert
– sequence: 3
  givenname: Martin
  surname: Persson
  fullname: Persson, Martin
– sequence: 4
  givenname: Maren
  surname: Funk
  fullname: Funk, Maren
– sequence: 5
  givenname: Vincent L Y
  surname: Loke
  fullname: Loke, Vincent L Y
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  givenname: Timo A
  surname: Nieminen
  fullname: Nieminen, Timo A
– sequence: 7
  givenname: Norman R
  surname: Heckenberg
  fullname: Heckenberg, Norman R
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  givenname: Halina
  surname: Rubinsztein-Dunlop
  fullname: Rubinsztein-Dunlop, Halina
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Snippet This paper reports on a simple synthesis and characterization of highly birefringent vaterite microspheres, which are composed of 20-30 nm sized nanocrystalls....
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SubjectTerms Anisotropy
AQUEOUS-SOLUTION
Atom and Molecular Physics and Optics
Atom- och molekylfysik och optik
Birefringence
CACO3
CALCIUM-CARBONATE
CRYSTAL-GROWTH
Equipment Design
FORCE
HYDROPHILIC BLOCK-COPOLYMERS
KINETICS
Lasers
MICROPARTICLES
Microscopy, Electron, Scanning - methods
Microscopy, Electron, Transmission - methods
Microspheres
Nanoparticles
Nanotechnology - methods
Optics and Photonics
Particle Size
PRECIPITATION
TWEEZERS
X-Ray Diffraction
Title Highly birefringent vaterite microspheres: production, characterization and applications for optical micromanipulation
URI https://www.ncbi.nlm.nih.gov/pubmed/19997439
https://search.proquest.com/docview/733788514
https://gup.ub.gu.se/publication/113933
Volume 17
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