Burhani Dian, Septevani Athanasia Amanda, Setiawan Ruby, Djannah Luthfia Miftahul, Putra Muhammad Andrew, Kusumah Sukma Surya, Sondari Dewi
Research Center for Biomaterial, Indonesian Institute of Sciences, Cibinong 16911, Indonesia.
Research Center for Chemistry, Indonesian Institute of Sciences, Serpong 15314, Indonesia.
Polymers (Basel). 2021 Aug 10;13(16):2649. doi: 10.3390/polym13162649.
This study aims to explore the use of cellulose nanocrystals (CNC) and cellulose nanofiber (CNF), obtained from unbleached fiber of oil palm empty fruit bunches (EFB), as raw materials in fabricating aerogel, using the facile technique without solvent displacement. The CNC was isolated from sulfuric acid hydrolysis, and the CNF was fibrillated using Ultra Turrax. The CNC and CNF were mixed by ultrasonication in different ratios to produce aerogel using slow freezing (-20 °C), followed by freeze-drying. The obtained aerogel was characterized as ultralightweight and highly porous material, at the density range of 0.0227 to 0.0364 g/cm and porosity of 98.027 to 98.667%. Interestingly, the ratio of CNC and CNF significantly affected the characteristics of the obtained aerogel. The mixed aerogel exhibited a higher specific surface area than pure CNC or CNF, with the highest value of 202.72 m/g for the ratio of 1:3 (CNC/CNF). In addition, the crystallinity degree of obtained aerogel showed a higher value in the range of 76.49 to 69.02%, with the highest value being obtained for higher CNC content. This study is expected to provide insight into nanocellulose-based aerogel, with a promising potential for various applications.
本研究旨在探索以从油棕空果串(EFB)未漂白纸浆中获得的纤维素纳米晶体(CNC)和纤维素纳米纤维(CNF)为原料,采用无溶剂置换的简便技术制备气凝胶。CNC通过硫酸水解法分离得到,CNF则使用超声均质机进行原纤化处理。将CNC和CNF按不同比例混合,通过超声处理后,采用缓慢冷冻(-20°C),随后进行冷冻干燥来制备气凝胶。所制备的气凝胶被表征为超轻质且具有高度多孔性的材料,密度范围为0.0227至0.0364 g/cm,孔隙率为98.027至98.667%。有趣的是,CNC与CNF的比例对所得气凝胶的特性有显著影响。混合气凝胶的比表面积高于纯CNC或CNF,其中比例为1:3(CNC/CNF)时比表面积最高,达到202.72 m²/g。此外,所得气凝胶的结晶度在76.49至69.02%范围内呈现较高值,且CNC含量越高结晶度越高。本研究有望为基于纳米纤维素的气凝胶提供深入见解,在各种应用中具有广阔的潜在应用前景。