Shaping characteristics in alginate hydrogel encapsulation via a two-fluid spraying method

Recently, an alginate hydrogel containing amphiphilic liposomes was suggested for application to an antifouling coating. In this study, we investigate the shaping characteristics of the alginate hydrogel by a spraying method for application to the coating. Sodium alginate droplets from the spraying...

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Published inJCT research Vol. 15; no. 5; pp. 1157 - 1165
Main Authors Seong, Baekhoon, Kim, Jihoon, Jung, Sejin, Kang, Giho, Lee, Jinkee, Byun, Doyoung, Lee, Kwang-Soo, Jang, Hyung-Seok, Ko, Jin Hwan
Format Journal Article
LanguageEnglish
Published New York Springer US 01.09.2018
Springer Nature B.V
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Abstract Recently, an alginate hydrogel containing amphiphilic liposomes was suggested for application to an antifouling coating. In this study, we investigate the shaping characteristics of the alginate hydrogel by a spraying method for application to the coating. Sodium alginate droplets from the spraying nozzle are known to be differently shaped by several external forces during the encapsulation process when such a droplet impacts onto the surfaces of liquid containing calcium ions. We adopted a two-fluid spraying method for fast alginate droplets with a scalable size suitable for mass production. Various shapes, such as mushroom, petal, sphere, and thin-sheet alginate hydrogel shapes containing liposomes, were obtained via this experimental approach. Supported by a theoretical analysis, we determined regimes for the various shapes depending on the droplet size and the concentration of the sodium alginate solution. Alginate hydrogel of different shapes based on the regimes will be used for the coating throughout a different post-processing.
AbstractList Recently, an alginate hydrogel containing amphiphilic liposomes was suggested for application to an antifouling coating. In this study, we investigate the shaping characteristics of the alginate hydrogel by a spraying method for application to the coating. Sodium alginate droplets from the spraying nozzle are known to be differently shaped by several external forces during the encapsulation process when such a droplet impacts onto the surfaces of liquid containing calcium ions. We adopted a two-fluid spraying method for fast alginate droplets with a scalable size suitable for mass production. Various shapes, such as mushroom, petal, sphere, and thin-sheet alginate hydrogel shapes containing liposomes, were obtained via this experimental approach. Supported by a theoretical analysis, we determined regimes for the various shapes depending on the droplet size and the concentration of the sodium alginate solution. Alginate hydrogel of different shapes based on the regimes will be used for the coating throughout a different post-processing.
Author Kang, Giho
Byun, Doyoung
Lee, Kwang-Soo
Kim, Jihoon
Seong, Baekhoon
Lee, Jinkee
Ko, Jin Hwan
Jung, Sejin
Jang, Hyung-Seok
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  orcidid: 0000-0002-8055-0410
  surname: Ko
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  email: jko@jejunu.ac.kr
  organization: Mechanical Engineering, Jeju National University
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CitedBy_id crossref_primary_10_1063_5_0159546
crossref_primary_10_12677_MS_2023_136062
crossref_primary_10_1021_acs_langmuir_9b03415
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Hydrogel encapsulation
Shaping
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Snippet Recently, an alginate hydrogel containing amphiphilic liposomes was suggested for application to an antifouling coating. In this study, we investigate the...
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SubjectTerms Antifouling coatings
Calcium ions
Chemistry and Materials Science
Corrosion and Coatings
Droplets
Encapsulation
Hydrogels
Industrial Chemistry/Chemical Engineering
Liposomes
Mass production
Materials Science
Nozzles
Polymer Sciences
Post-processing
Sodium alginate
Spraying
Surfaces and Interfaces
Thin Films
Tribology
Title Shaping characteristics in alginate hydrogel encapsulation via a two-fluid spraying method
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https://www.proquest.com/docview/2099970093
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