Efficient synthesis of tricaproin: catalyst and reaction optimization
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Lenar I. Musin
, Renat M. Akhmadullin
, Thi Nam Pham
, Hong Dung Lai
Abstract
This study presents a short communication on exploring, for the first time, a simple approach for the selective and highly effective synthesis of tricaproin by synergistically combining silicon tripolyphosphate and phosphoric acid in the catalytic esterification of glycerol with caproic acid. Results reveal that within the initial hour of the synthesis, the conversion in the presence of the proposed mixture achieved an efficiency of 62.99 %, whereas this figure for individual catalysts only modestly stopped at 27.50 and 11.74 %, respectively. Furthermore, the inherent shortcomings in the tricaprion synthesis, such as catalyst deactivation, resinification of the reaction solution, and generation of numerous by-products, were successfully addressed. The structure of the resultant tricaproin and the possible absence of undesired by-products were confirmed by NMR, mass spectrometry, FT-IR, and TLC. The optimal conditions for the synthesis were also investigated. The study not only contributes a practical and selective synthetic approach for tricaproin but also paves the way for exploring novel avenues to enhance the efficiency of the catalytic esterification.
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Research funding: There is no funding for this study.
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Supplementary Material
This article contains supplementary material (https://doi.org/10.1515/pac-2024-0017).
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Articles in the same Issue
- Frontmatter
- In this issue
- Preface
- Special issue on “Advanced materials for environmental protection and sustainability in Asean countries”
- Special topic papers
- Nanocomposite nanofibrous membranes of graphene and graphene oxide: water remediation potential
- Selection of graphene as a conductive additive for biomass-based activated carbon electrode in capacitive deionization: acid-treated as a practical approach to reduce graphene content
- Biochar-based catalysts: a potential disposal of plant biomass from phytoremediation
- Bio-based aerogel composites of coconut pith-derived carbon and chitosan for efficient anionic dye-polluted water treatment
- Study on synthesizing the complex of sorafenib with 2-hydroxypropyl-β-cyclodextrin to enhance the anticancer activity of the drug substance
- An antimicrobial acrylic polyurethane coating with TiO2-Ag hybrid nanoparticles
- Efficient synthesis of tricaproin: catalyst and reaction optimization
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- Preparation of sulfur nanoparticles in chitosan-copper complex and investigation of its nematicidal activity against Pratylenchus pratensis in vitro
- Fabrication of cathode electrodes based on activated carbon, reduced-graphene for hybrid capacitive deionization technology
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- Mechanical properties of web kapok/fiberglass-epoxy hybrid composites for marine structures
- Investigation on recycling and reprocessing ability of self-healing natural rubber based on ionic crosslink network