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  4. Size Control Mechanism for Bio-Nanoparticle Fabricated by Electrospray Deposition
 
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Size Control Mechanism for Bio-Nanoparticle Fabricated by Electrospray Deposition

Journal
Drying Technology
Journal Volume
33
Journal Issue
4
Pages
406-413
Date Issued
2015
Author(s)
Wang B.-B.
Wang X.-D.
Wang T.-H.
Lee D.-J.  
DOI
10.1080/07373937.2014.970258
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/408146
URL
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84922280797&doi=10.1080%2f07373937.2014.970258&partnerID=40&md5=d2a602edbab1ec8ebcc77872a25b60fe
Abstract
The present work employed a molecular dynamics method to investigate the effect of NaCl concentration on the deformation, breakup, and evaporation characteristics of bio-nanodroplets under a strong electric field. It aims to reveal the size control mechanism for a nanoparticle produced by electrospray deposition. The results show that when the droplet dissolves NaCl, it is elongated to be a longer ¡§spindle¡¨ by the electric field force, compared to the droplet without NaCl, and several small clusters are ejected from two tips of the spindle due to the hydration effect of Na + and Cl ? . In addition, the formation of ion pairs is observed when the droplet dissolves NaCl. The NaCl concentration affects the hydration degree and the formation of ion pairs significantly, which leads to different spindle lengths and number of clusters. The longer spindle and the larger cluster number could enlarge the free surface area and remarkably accelerate evaporation. Fabrication of smaller bio-nanoparticle requires both a faster evaporation rate and larger cluster number, which can be achieved by selecting an appropriate NaCl concentration. ? 2015, Copyright ? Taylor & Francis Group, LLC.
Subjects
Deformation and breakup
Electrospray deposition
Evaporation
Molecular dynamics
Nanodroplet
Type
journal article

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