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Green Synthesis of Urethane-Linked Tamarind Seed Xyloglucan: Thermal Stability, Antibacterial Properties, and DFT Study.
- Source :
-
Biopolymers [Biopolymers] 2025 Jan; Vol. 116 (1), pp. e23648. - Publication Year :
- 2025
-
Abstract
- This study presents a feasible, one-pot synthesis approach for the preparation of a composite biopolymer material derived from tamarind seed xyloglucan (XG) by utilizing isocyanate chemistry. Through a facile reaction process, urethane bonds are formed in XG, resulting in the formation of a crosslinked network. FTIR spectra confirm the successful urethane link formation in XG via the OH-NCO reaction, and CHN analysis provides insights into the elemental composition. The synthesized XG-urethane composite (U-XG) exhibits enhanced thermal stability compared to native XG, with an enhanced degradation temperature (T <subscript>5%</subscript> ) of 276°C (XG marked T <subscript>5%</subscript> at a lower temperature of 163°C). The optimized geometric structure, hydrogen bond types, and hydrogen bond strength of the synthesized U-XG are computationally studied by density functional theory (DFT) at the B3LYP/6-31G(d,p) level. This study also investigates the antibacterial efficacy of both XG and U-XG against a panel of pathogenic bacteria, including gram-positive bacteria such as S. aureus and S. epidermidis, as well as gram-negative E. coli. The U-XG demonstrates superior antibacterial activity against S. epidermidis compared to pristine XG. This research showcases the feasibility of a one-pot synthesis approach for preparing urethane-linked XG with enhanced thermal properties and superior antibacterial activity, offering promising prospects for biomedical and antimicrobial applications.<br /> (© 2024 Wiley Periodicals LLC.)
- Subjects :
- Microbial Sensitivity Tests
Temperature
Hydrogen Bonding
Staphylococcus aureus drug effects
Spectroscopy, Fourier Transform Infrared
Escherichia coli drug effects
Xylans chemistry
Urethane chemistry
Glucans chemistry
Anti-Bacterial Agents pharmacology
Anti-Bacterial Agents chemistry
Anti-Bacterial Agents chemical synthesis
Tamarindus chemistry
Seeds chemistry
Green Chemistry Technology methods
Density Functional Theory
Subjects
Details
- Language :
- English
- ISSN :
- 1097-0282
- Volume :
- 116
- Issue :
- 1
- Database :
- MEDLINE
- Journal :
- Biopolymers
- Publication Type :
- Academic Journal
- Accession number :
- 39705111
- Full Text :
- https://doi.org/10.1002/bip.23648