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Novel spider-web-like nanoporous networks based on jute cellulose nanowhiskers.

Carbohydrate polymers [2013-02-13]
Xinwang Cao,Xianfeng Wang,Bin Ding,Jianyong Yu,Gang Sun
PMID: 23399256
ABSTRACT

Cellulose nanowhiskers as a kind of renewable and biocompatible nanomaterials evoke much interest because of its versatility in various applications. Herein, for the first time, a novel controllable fabrication of spider-web-like nanoporous networks based on jute cellulose nanowhiskers (JCNs) deposited on the electrospun (ES) nanofibrous membrane by simple directly immersion-drying method is reported. Jute cellulose nanowhiskers were extracted from jute fibers with a high yield (over 80%) via a 2,2,6,6-tetramethylpiperidine-1-oxyl radical (TEMPO)/NaBr/NaClO system selective oxidization combined with mechanical homogenization. The morphology of JCNs nanoporous networks/ES nanofibrous membrane architecture, including coverage rate, pore-width and layer-by-layer packing structure of the nanoporous networks, can be finely controlled by regulating the JCNs dispersions properties and drying conditions. The versatile nanoporous network composites based on jute cellulose nanowhiskers with ultrathin diameters (3–10   nm) and nanofibrous membrane supports with diameters of 100–300   nm, would be particularly useful for filter applications.

MATERIALS

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