Literature DB >> 25805058

To Model Chemical Reactivity in Heterogeneous Emulsions, Think Homogeneous Microemulsions.

Carlos Bravo-Díaz1, Laurence Stuart Romsted2, Changyao Liu2, Sonia Losada-Barreiro1, Maria José Pastoriza-Gallego3, Xiang Gao2, Qing Gu2, Gunaseelan Krishnan2, Verónica Sánchez-Paz1, Yongliang Zhang2, Aijaz Ahmad Dar4.   

Abstract

Two important and unsolved problems in the food industry and also fundamental questions in colloid chemistry are how to measure molecular distributions, especially antioxidants (AOs), and how to model chemical reactivity, including AO efficiency in opaque emulsions. The key to understanding reactivity in organized surfactant media is that reaction mechanisms are consistent with a discrete structures-separate continuous regions duality. Aggregate structures in emulsions are determined by highly cooperative but weak organizing forces that allow reactants to diffuse at rates approaching their diffusion-controlled limit. Reactant distributions for slow thermal bimolecular reactions are in dynamic equilibrium, and their distributions are proportional to their relative solubilities in the oil, interfacial, and aqueous regions. Our chemical kinetic method is grounded in thermodynamics and combines a pseudophase model with methods for monitoring the reactions of AOs with a hydrophobic arenediazonium ion probe in opaque emulsions. We introduce (a) the logic and basic assumptions of the pseudophase model used to define the distributions of AOs among the oil, interfacial, and aqueous regions in microemulsions and emulsions and (b) the dye derivatization and linear sweep voltammetry methods for monitoring the rates of reaction in opaque emulsions. Our results show that this approach provides a unique, versatile, and robust method for obtaining quantitative estimates of AO partition coefficients or partition constants and distributions and interfacial rate constants in emulsions. The examples provided illustrate the effects of various emulsion properties on AO distributions such as oil hydrophobicity, emulsifier structure and HLB, temperature, droplet size, surfactant charge, and acidity on reactant distributions. Finally, we show that the chemical kinetic method provides a natural explanation for the cut-off effect, a maximum followed by a sharp reduction in AO efficiency with increasing alkyl chain length of a particular AO. We conclude with perspectives and prospects.

Entities:  

Year:  2015        PMID: 25805058     DOI: 10.1021/acs.langmuir.5b00112

Source DB:  PubMed          Journal:  Langmuir        ISSN: 0743-7463            Impact factor:   3.882


  5 in total

1.  Unexpected Antioxidant Efficiency of Chlorogenic Acid Phenolipids in Fish Oil-in-Water Nanoemulsions: An Example of How Relatively Low Interfacial Concentrations Can Make Antioxidants to Be Inefficient.

Authors:  Marlene Costa; Sonia Losada-Barreiro; António Vicente; Carlos Bravo-Díaz; Fátima Paiva-Martins
Journal:  Molecules       Date:  2022-01-27       Impact factor: 4.411

2.  Effects of the Reactive Moiety of Phenolipids on Their Antioxidant Efficiency in Model Emulsified Systems.

Authors:  Marlene Costa; Sonia Losada-Barreiro; Júlia Magalhães; Luís S Monteiro; Carlos Bravo-Díaz; Fátima Paiva-Martins
Journal:  Foods       Date:  2021-05-10

Review 3.  Polyphenolic Antioxidants in Lipid Emulsions: Partitioning Effects and Interfacial Phenomena.

Authors:  Marlene Costa; Sonia Losada-Barreiro; Fátima Paiva-Martins; Carlos Bravo-Díaz
Journal:  Foods       Date:  2021-03-05

4.  pH Changes in the Micelle-Water Interface of Surface-Active Ionic Liquids Dictate the Stability of Encapsulated Curcumin: An Insight Through a Unique Interfacial Reaction between Arenediazonium Ions and t-Butyl Hydroquinone.

Authors:  Saima Afzal; Mohd Sajid Lone; Nighat Nazir; Aijaz Ahmad Dar
Journal:  ACS Omega       Date:  2021-06-03

Review 5.  Polyphenols as Antioxidants for Extending Food Shelf-Life and in the Prevention of Health Diseases: Encapsulation and Interfacial Phenomena.

Authors:  Marlene Costa; Zerrin Sezgin-Bayindir; Sonia Losada-Barreiro; Fátima Paiva-Martins; Luciano Saso; Carlos Bravo-Díaz
Journal:  Biomedicines       Date:  2021-12-14
  5 in total

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