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首页> 外文期刊>Journal of Applied Polymer Science >A highly efficient dispersant from black liquor for carbendazim suspension concentrate: Preparation, self-assembly behavior and investigation of dispersion mechanism
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A highly efficient dispersant from black liquor for carbendazim suspension concentrate: Preparation, self-assembly behavior and investigation of dispersion mechanism

机译:黑液中多菌灵悬浮液的高效分散剂:制备,自组装行为及分散机理研究

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Compared with traditional approaches using synthetic amphiphilic block copolymers, alkyl chain cross-linked lignosulfonate (ASL) with high molecular weight (Mw) from black liquor was synthesized and characterized by GPC, functional group content, FTIR, and H-1-NMR measurement, and then used as water soluble amphiphilic biopolymer to prepare polymersomes via solution self-assembly. DLS illustrated the solution assembly behavior. The hollow nature of nanospheres was revealed by TEM. Moreover, the element analysis and XPS results revealed the hollow sphere structure with a hydrophilic core and a hydrophobic shell. It facilitated the efficient encapsulation of pesticide carbendazim into the hollow sphere via electrostatic interaction, which was investigated by SEM, TEM, elemental analysis and XPS. In our study, ASLs with different Mw from 20 kDa to 200 kDa all could exhibit the similar self-assembly behavior, which suggests that the hollow spheres and the encapsulation experiment were easily duplicated from ASL polymers without structure dependence. Furthermore, the dispersion properties of ASL in the carbendazim suspension concentrate (SC) system were also investigated, which showed that SC with ASL exhibited better dispersion property and rheological performance than that of NSF and commercial LS. Preparation and application of polymersomes via self-assembly from modified-lignin from black liquor provide a promising and effective scaffold which can be conveniently obtained from cheap and renewable bioresource. (C) 2015 Wiley Periodicals, Inc.
机译:与使用合成两亲嵌段共聚物的传统方法相比,从黑液中合成了具有高分子量(Mw)的烷基链交联的木质素磺酸盐(ASL),并通过GPC,官能团含量,FTIR和H-1-NMR进行了表征,然后用作水溶性两亲生物聚合物,通过溶液自组装制备聚合物小体。 DLS说明了解决方案组装行为。 TEM揭示了纳米球的空心性质。而且,元素分析和XPS结果显示了具有亲水核和疏水壳的空心球结构。通过SEM,TEM,元素分析和XPS研究,通过静电相互作用促进了农药多菌灵向空心球的有效包封。在我们的研究中,具有从20 kDa到200 kDa的不同Mw的ASL都可以表现出相似的自组装行为,这表明空心球和包封实验很容易从ASL聚合物复制而没有结构依赖性。此外,还研究了ASL在多菌灵悬浮剂(SC)体系中的分散性能,这表明具有ASL的SC的分散性能和流变性能优于NSF和市售LS。通过来自黑液的改性木质素的自组装制备和应用聚合物囊泡提供了一种有前途且有效的支架,该支架可以方便地从廉价且可再生的生物资源中获得。 (C)2015年Wiley Periodicals,Inc.

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