| Article ID | Journal | Published Year | Pages | File Type | 
|---|---|---|---|---|
| 5156357 | Carbohydrate Polymers | 2018 | 9 Pages | 
Abstract
												The rheological properties of polysaccharide (SAP) from Sophora alopecuroides L. seeds were systematically investigated by fitting different models. The steady flow testing indicated that SAP exhibited shear-thinning behaviors, which were enhanced with increasing concentration and decreasing temperature. This was demonstrated quantitatively by Williamson and Arrhenius models. According to the generalized Morris equation, SAP exhibited random coil conformation with the potential to form weak gel-like network. On the other hand, multiple results of dynamic tests confirmed the viscoelastic properties of SAP, showing oscillatory behaviors between a dilute solution and an elastic gel. Furthermore, SAP solutions were thermorheologically stable without remarkable energetic interactions or structural heterogeneity, since their rheological patterns were successfully applied to Time-temperature superposition (TTS) principle, modified Cole-Cole analysis and Cox-Merz rule.
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											Authors
												Yan Wu, Rui Guo, Nannan Cao, Xiangjun Sun, Zhongquan Sui, Qingbin Guo, 
											