Using fluorescence microscopy, the inkjet deposition dynamics of monodispersed polystyrene particles in the size range of have been studied on glass, Ar plasma cleaned glass, and PDMS coated glass substrates. The results show that the substrate properties play an important role in determining the final dried patterns formed by the colloidal particles. Our observations also reveal that particle size and contact angle formed by the solvent in the dispersion determine how close to the contact line the particles can be deposited. It is found that smaller particles can move closer to the deposited contact line than particles with bigger sizes. This study can serve as a realistic experimental model system for a number of fundamental queries on how the final deposition microstructure depends on the ink formulation and substrate properties. The knowledge obtained here can be explored further to optimize process parameters for the fabrication of hybrid solar cells with improved morphology and device properties.
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e-mail: ysun@coe.drexel.edu
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Research Papers
Effects of Particle Size and Substrate Surface Properties on Deposition Dynamics of Inkjet-Printed Colloidal Drops for Printable Photovoltaics Fabrication
S. Biswas,
S. Biswas
Department of Mechanical Engineering,
Binghamton University
, Binghamton, NY 13902
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S. Gawande,
S. Gawande
Department of Mechanical Engineering,
Binghamton University
, Binghamton, NY 13902
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V. Bromberg,
V. Bromberg
Department of Mechanical Engineering,
Binghamton University
, Binghamton, NY 13902
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Y. Sun
Y. Sun
Department of Mechanical Engineering,
e-mail: ysun@coe.drexel.edu
Binghamton University
, Binghamton, NY 13902; Department of Mechanical Engineering and Mechanics, Drexel University
, Philadelphia, PA 19104
Search for other works by this author on:
S. Biswas
Department of Mechanical Engineering,
Binghamton University
, Binghamton, NY 13902
S. Gawande
Department of Mechanical Engineering,
Binghamton University
, Binghamton, NY 13902
V. Bromberg
Department of Mechanical Engineering,
Binghamton University
, Binghamton, NY 13902
Y. Sun
Department of Mechanical Engineering,
Binghamton University
, Binghamton, NY 13902; Department of Mechanical Engineering and Mechanics, Drexel University
, Philadelphia, PA 19104e-mail: ysun@coe.drexel.edu
J. Sol. Energy Eng. May 2010, 132(2): 021010 (7 pages)
Published Online: May 10, 2010
Article history
Received:
September 3, 2009
Revised:
December 11, 2009
Online:
May 10, 2010
Published:
May 10, 2010
Citation
Biswas, S., Gawande, S., Bromberg, V., and Sun, Y. (May 10, 2010). "Effects of Particle Size and Substrate Surface Properties on Deposition Dynamics of Inkjet-Printed Colloidal Drops for Printable Photovoltaics Fabrication." ASME. J. Sol. Energy Eng. May 2010; 132(2): 021010. https://doi.org/10.1115/1.4001470
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