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相互连接的大孔 cryogel 具有纳米级交联的再生纤维素网络。

Interconnected macropores cryogel with nano-thin crosslinked network regenerated cellulose.

机构信息

Bioresource and Biorefinery Group, Faculty of Science and Technology, Universiti Kebangsaan Malaysia, 43600 UKM Bangi, Selangor, Malaysia.

Bioresource and Biorefinery Group, Faculty of Science and Technology, Universiti Kebangsaan Malaysia, 43600 UKM Bangi, Selangor, Malaysia.

出版信息

Int J Biol Macromol. 2020 Apr 1;148:11-19. doi: 10.1016/j.ijbiomac.2019.12.240. Epub 2019 Dec 29.

Abstract

Dissolved oil palm empty fruit bunch cellulose (EFBC) and sodium carboxymethylcellulose (NaCMC) were chemically crosslinked with epichlorohydrin (ECH) to generate designated hydrogel. After swelling process in distilled water, the swollen hydrogel was frozen and freeze-dried to form cryogel. The swelling phenomenon of hydrogel during the absorption process gave substantial effects on thinning of crosslinked network wall, pore size and volume, steadiness of cryogel skeletal structure, and re-swelling of cryogel. The swelling effects on hydrogel were confirmed via microscopic study using variable pressure scanning electron microscope (VPSEM). From the retrieved VPSEM images, nano-thin crosslinked network wall of 24.31 ± 1.97 nm and interconnected pores were observed. As a result, the amount of water, the swelling degree, and the freeze-drying process indirectly affected the VPSEM images that indicated pore size and volume, formation of interconnected pores, and re-swelling of cryogel. This study determined the intertwined factors that affected both hydrogel and cryogel properties by investigating the swelling phenomenon and its ensuing effects.

摘要

溶解油棕空果串纤维素(EFBC)和羧甲基纤维素钠(NaCMC)与表氯醇(ECH)化学交联生成指定的水凝胶。在蒸馏水的溶胀过程后,溶胀水凝胶被冷冻和冻干以形成冷冻凝胶。水凝胶在吸收过程中的溶胀现象对交联网络壁的变薄、孔径和体积、冷冻凝胶骨架结构的稳定性以及冷冻凝胶的再溶胀有显著影响。通过使用可变压力扫描电子显微镜(VPSEM)进行微观研究,证实了水凝胶的溶胀效应。从检索到的 VPSEM 图像中,观察到了 24.31±1.97nm 的纳米级薄交联网络壁和相互连通的孔。因此,水的量、溶胀度和冻干过程间接影响 VPSEM 图像,表明孔径和体积、相互连通孔的形成以及冷冻凝胶的再溶胀。本研究通过研究溶胀现象及其后续影响,确定了影响水凝胶和冷冻凝胶性能的交织因素。

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