Preparation, Structural Characterization of Octenyl Succinic Anhydride-Modified Bamboo Shoot-Derived Cellulose Nano-Crystals
Maokun Huang, Wen Chen, Zichen Zhang, Qi Wang, Yunlong Li, Yafeng Zheng

TL;DR
Researchers modified cellulose nanocrystals from bamboo shoots to improve their emulsifying properties for food applications.
Contribution
A novel method to modify bamboo shoot-derived cellulose nanocrystals with OSA, enhancing their amphiphilicity and stability.
Findings
OSNC had a higher degree of substitution than OSA-MCC at the optimal ratio.
OSNC showed improved dispersion stability and balanced amphiphilicity.
Modification preserved the cellulose I crystal form with slightly reduced crystallinity.
Abstract
To tackle the poor emulsibility of hydrophilic cellulose nanocrystals (CNCs), this study prepared octenyl succinic anhydride (OSA)-modified bamboo shoot CNC (OSNC) via acid hydrolysis and esterification, using microcrystalline cellulose (MCC) as a control. The degree of substitution (DS), chemical structure, crystalline structure, morphological characteristics, zeta potential, wettability, and thermal stability of OSNC and OSA-modified MCC (OSA-MCC) were characterized using multiple techniques. Results showed that at the optimal cellulose-to-OSA ratio (1:0.225), OSNC had a higher DS (0.029 ± 0.01) than OSA-MCC (0.024 ± 0.02). FTIR confirmed successful OSA grafting; XRD showed a preserved cellulose I crystal form with slightly reduced crystallinity; OSNC had improved dispersion stability (zeta potential: −44.0 mV), balanced amphiphilicity (contact angle: 61.8°), and enhanced thermal…
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Taxonomy
TopicsAdvanced Cellulose Research Studies · Natural Fiber Reinforced Composites · Nanocomposite Films for Food Packaging
