Developments on Synthesis and Applications of Sulfobetaine Derivatives: A Brief Review

Zwitterionic polymers are material families characterized by high dipole moment and highly charged groups. Zwitterionic materials simultaneously possess an equimolar number of cationic and anionic moieties, maintaining overall electroneutrality and high hydrophilicity. Zwitterionic is categorized in...

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Autores principales: Eva Oktavia Ningrum, Eva Lestiana Pratiwi, Isyarah Labbaika Shaffitri, Suprapto Suprapto, Mentari Rachmatika Mukti, Ely Agustiani, Niniek Fajar Puspita, Achmad Dwitama Karisma
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Publicado: Department of Chemistry, Universitas Gadjah Mada 2021
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spelling oai:doaj.org-article:fae810dfe76b43bdba5292ff5dc7cd5f2021-12-02T19:04:07ZDevelopments on Synthesis and Applications of Sulfobetaine Derivatives: A Brief Review1411-94202460-157810.22146/ijc.61128https://doaj.org/article/fae810dfe76b43bdba5292ff5dc7cd5f2021-08-01T00:00:00Zhttps://jurnal.ugm.ac.id/ijc/article/view/61128https://doaj.org/toc/1411-9420https://doaj.org/toc/2460-1578Zwitterionic polymers are material families characterized by high dipole moment and highly charged groups. Zwitterionic materials simultaneously possess an equimolar number of cationic and anionic moieties, maintaining overall electroneutrality and high hydrophilicity. Zwitterionic is categorized into three groups: phosphobetaine, carboxybetaine, and sulfobetaine that could form dense and stable hydration shells through the strong ion-dipole interaction among water molecules and zwitterions. As a result of their remarkable hydration capability, low interfacial energy, and marvelous antifouling capacities, these materials have been applied as adsorbing agents, biomedical applications, electronics, hydrogels, and antifouling for membrane separation and marine coatings. This review is focused on polysulfobetaine, which contains sulfonate as a negatively charged group, and quaternary ammonium as a positively charged group. Polysulfobetaine is the most promising one to be applied in the industry since it is commercially available and its monomers are easily prepared. The comparisons of several polysulfobetaine derivatives as antimicrobial, antifouling, surfactant and detergents, biomedical and electronic application, surface modification, and smart hydrogel are presented in this review.Eva Oktavia NingrumEva Lestiana PratiwiIsyarah Labbaika ShaffitriSuprapto SupraptoMentari Rachmatika MuktiEly AgustianiNiniek Fajar PuspitaAchmad Dwitama KarismaDepartment of Chemistry, Universitas Gadjah Madaarticlezwitterionicsulfobetaineantifoulingbiomedical applicationChemistryQD1-999ENIndonesian Journal of Chemistry, Vol 21, Iss 5, Pp 1298-1315 (2021)
institution DOAJ
collection DOAJ
language EN
topic zwitterionic
sulfobetaine
antifouling
biomedical application
Chemistry
QD1-999
spellingShingle zwitterionic
sulfobetaine
antifouling
biomedical application
Chemistry
QD1-999
Eva Oktavia Ningrum
Eva Lestiana Pratiwi
Isyarah Labbaika Shaffitri
Suprapto Suprapto
Mentari Rachmatika Mukti
Ely Agustiani
Niniek Fajar Puspita
Achmad Dwitama Karisma
Developments on Synthesis and Applications of Sulfobetaine Derivatives: A Brief Review
description Zwitterionic polymers are material families characterized by high dipole moment and highly charged groups. Zwitterionic materials simultaneously possess an equimolar number of cationic and anionic moieties, maintaining overall electroneutrality and high hydrophilicity. Zwitterionic is categorized into three groups: phosphobetaine, carboxybetaine, and sulfobetaine that could form dense and stable hydration shells through the strong ion-dipole interaction among water molecules and zwitterions. As a result of their remarkable hydration capability, low interfacial energy, and marvelous antifouling capacities, these materials have been applied as adsorbing agents, biomedical applications, electronics, hydrogels, and antifouling for membrane separation and marine coatings. This review is focused on polysulfobetaine, which contains sulfonate as a negatively charged group, and quaternary ammonium as a positively charged group. Polysulfobetaine is the most promising one to be applied in the industry since it is commercially available and its monomers are easily prepared. The comparisons of several polysulfobetaine derivatives as antimicrobial, antifouling, surfactant and detergents, biomedical and electronic application, surface modification, and smart hydrogel are presented in this review.
format article
author Eva Oktavia Ningrum
Eva Lestiana Pratiwi
Isyarah Labbaika Shaffitri
Suprapto Suprapto
Mentari Rachmatika Mukti
Ely Agustiani
Niniek Fajar Puspita
Achmad Dwitama Karisma
author_facet Eva Oktavia Ningrum
Eva Lestiana Pratiwi
Isyarah Labbaika Shaffitri
Suprapto Suprapto
Mentari Rachmatika Mukti
Ely Agustiani
Niniek Fajar Puspita
Achmad Dwitama Karisma
author_sort Eva Oktavia Ningrum
title Developments on Synthesis and Applications of Sulfobetaine Derivatives: A Brief Review
title_short Developments on Synthesis and Applications of Sulfobetaine Derivatives: A Brief Review
title_full Developments on Synthesis and Applications of Sulfobetaine Derivatives: A Brief Review
title_fullStr Developments on Synthesis and Applications of Sulfobetaine Derivatives: A Brief Review
title_full_unstemmed Developments on Synthesis and Applications of Sulfobetaine Derivatives: A Brief Review
title_sort developments on synthesis and applications of sulfobetaine derivatives: a brief review
publisher Department of Chemistry, Universitas Gadjah Mada
publishDate 2021
url https://doaj.org/article/fae810dfe76b43bdba5292ff5dc7cd5f
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