Article (Scientific journals)
Sucrose Esters as Oleogelators in Mono or Binary Structured Oleogels Using Different Oleogelation Routes.
Lomonaco Teodoro Da Silva, Thais; Danthine, Sabine
2023In Gels, 9 (5), p. 399
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Keywords :
binary structuration; direct dispersion; foam-template; oleogels; solvent exchange; sucrose ester; Bioengineering; Biomaterials; Organic Chemistry; Polymers and Plastics
Abstract :
[en] Sucrose esters (SE) have been investigated as structuring agents in oleogels. Due to the low structuration power of SE as single agent, this component has recently been explored in combination with other oleogelators to form multicomponent systems. This study aimed to evaluate binary blends of SEs with different hydrophilic-lipophilic balances (HLBs) with lecithin (LE), monoglycerides (MGs) and hard-fat (HF), according to their physical properties. The following SEs, SP10-HLB2, SP30-HLB6, SP50-HLB11, and SP70-HLB15, were structured using three different routes: "traditional", "ethanol" and "foam-template". All binary blends were made using a 10% oleogelator in 1:1 proportion for binary mixtures; they were then evaluated for their microstructure, melting behavior, mechanical properties, polymorphism and oil-binding capacity. SP10 and SP30 did not form well-structure and self-standing oleogels in any combination. Although SP50 showed some potential blends with HF and MG, their combination with SP70 led to even more well-structured oleogels, with a higher hardness (~0.8 N) and viscoelasticity (160 kPa), and 100% oil-binding capacity. This positive result might be attributed to the reinforcement of the H-bond between the foam and the oil by MG and HF.
Disciplines :
Food science
Author, co-author :
Lomonaco Teodoro Da Silva, Thais  ;  Université de Liège - ULiège > Département GxABT > Technologie Alimentaire (TA)
Danthine, Sabine  ;  Université de Liège - ULiège > TERRA Research Centre > Technologie Alimentaire (TA)
Language :
English
Title :
Sucrose Esters as Oleogelators in Mono or Binary Structured Oleogels Using Different Oleogelation Routes.
Publication date :
10 May 2023
Journal title :
Gels
eISSN :
2310-2861
Publisher :
MDPI, Switzerland
Volume :
9
Issue :
5
Pages :
399
Peer reviewed :
Peer reviewed
Funders :
ULiège - University of Liège
Funding text :
The authors are grateful for the Postdoctoral fellowships and funding in Sciences, Technology, Engineering, Materials, and Agrobiotechnology (STEMA) funding OTP Nº DIVE.0899-J-P given by ULiège University Research Council.
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since 28 June 2023

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