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您现在的位置:中国聚合物网 > 资料 > Cellulose for waterbornes 的搜索结果 共有结果529,当前从第11条到第20条,本次搜索耗时0
 
Dissolution of cellulose in NaOH/thiourea/urea aqueous solution and Preparation of Regenerated Cellulose Fiber
关键字:Dissolution of cellulose, Preparation of Regenerated Cellulose Fiber
It is first time that cellulose was dissolved in NaOH/Thiourea/Urea aqueous solution, in which cellulose can be dissolved quickly. The optimal composition of solvent was determined by solubility of cellulose in novel solvents. The ...
http://www.polymer.cn/research/dis_info1274
 
Functional cellulose graft copolymers
Cellulose is one of the most abundant natural polymers on earth and has the advantages of renewable, biocompatible, and biodegradable. There are three hydroxyl groups on each glucose repeat unit on cellulose backbone.
http://www.polymer.cn/research/dis_info16840
 
Electrospinning of cellulose benzoate and phenylcarbamate
Electropinning is a simple, feasible and powerful method for generating ultra-fine fibers with diameters in the micrometer down to nanometer range1-3. Cellulose benzoates and phenylcarbamates exhibit high chiral recognition ability and afford&nb...
http://www.polymer.cn/research/dis_info11414
 
Dissolution of cellulose in NaOH/thiourea/urea aqueous solution and Preparation of Regenerated Cellulose Fiber
关键字:Dissolution of cellulose, Preparation of Regenerated Cellulose Fiber
It is first time that cellulose was dissolved in NaOH/Thiourea/Urea aqueous solution, in which cellulose can be dissolved quickly. The optimal composition of solvent was determined by solubility of cellulose in novel solvents. The ...
http://www.polymer.cn/research/dis_info1274
 
Capturing CO2 for Cellulose Dissolution
Capturing CO2 for Cellulose Dissolution
http://www.polymer.cnt//ss/HaiboXie/publicationsshow_12664.html
 
Utilization of bacterial cellulose in food
Abstract Bacterial cellulose (BC), a microbial polysaccharide, has significant potential as a food ingredient in view of its high purity, in situ change of flavor and color, and having the ability to form various shapes and textures. As a nano-scale fiber it can form a 3D network structure. Its material properties are multifunctional, with potential uses for thickening and gelling, stabilizin...
http://www.polymer.cnt//ss/yangguang/publicationsshow_5045.html
 
Facile transformation of hydrophilic cellulose into superhydrophobic cellulose
关键字:hydrophilic cellulose, superhydrophobic
Superhydrophobic cellulose-based materials coupled with transparent, stable and nanoscale polymethylsiloxane coating have been successfully achieved by a simple process via chemical vapor deposition, followed by hydrolyzation and polymerization.
http://www.polymer.cn/research/sy_info19387
 
Macromolecules 2015: Revealing the Hydrophobicity of Natural Cellulose by Single-Molecule Experiments
关键字:Natural Cellulose, Hydrophobicity
Natural cellulose (NC) is the most abundant biomacromolecule. The fact that each pyranose ring of NC has three hydroxyl groups implies that NC should be highly hydrophilic. The paradoxical water insolubility of NC is usually explained by the strong tendency to form the hydrogen-bonding network by the high content of hydroxyl groups. In this study, we present the first experimental evidence that ...
http://www.polymer.cn/research/sy_info19247
 
Mechanical strength of the grafted cellulose and the regenerated cellulose from the ionic liquid solution
There has been considerable interest on recent development of carbohydrate polymers due to the capability of creating effective functional groups for potential end use. Graft copolymerization reactions onto cotton cellulose with acrylonitrile&nb...
http://www.polymer.cn/research/dis_info12981
 
Facile transformation of hydrophilic cellulose into superhydrophobic cellulose
关键字:hydrophilic cellulose, superhydrophobic
Superhydrophobic cellulose-based materials coupled with transparent, stable and nanoscale polymethylsiloxane coating have been successfully achieved by a simple process via chemical vapor deposition, followed by hydrolyzation and polymerization.
http://www.polymer.cn/research/sy_info19387
 
 
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