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Layer-by-layer self-assembly of a lignin-poly(vinyl alcohol) based polyelectrolyte with a conductivity method

机译:基于木质素聚(乙烯醇)基基聚电解质的层逐层自组装,具有电导法

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In this study, we made a new attempt to examine the relationship between the conductivity and the concentration of a polyelectrolyte solution and to prepare multilayer films with cationic lignin and polyanions through layer-by-layer self-assembly. The nitrogen content of trimethyl lignin quaternary amine salt (TLQA) was 3.56%, and the carboxyl content of carboxymethylated poly (vinyl alcohol) (CMPVA) was 0.62 mmol/g. Attenuated total reflectance spectra confirmed that TLQA and CMPVA were fabricated and assembled successfully. The concentration of TLQA had a polynomial correlation with the conductivity [correlation coefficient (R-2) = 0.9953], and the concentration of CMPVA was linear with the conductivity (R-2 = 0.9819). The electrostatic sequential adsorption process was monitored with a UV-visible spectrophotometer, and the morphology of the (TLQA/CMPVA)(n) (where n is the number of double membranes) multilayer film was observed by atomic force microscopy and scanning electron microscopy. When the absorbance of the (TLQA/CMPVA) n multilayer film increased linearly, the linear equation was y = 0.0267 x + 0.07453 and R-2 was 0.9735. When five layers of TLQA and CMPVA were assembled, the surface root mean square roughness of TLQA and CMPVA were 21.07 and 65.28 nm, respectively. When the number of layers increased, the film surface roughness increased. The stability of the multilayer films in aqueous solution was determined by a conductivity meter. The (TLQA/CMPVA)(n) multilayer film was stable in water. The results of the research demonstrate for the first time that TLQA and CMPVA could be assembled and successfully driven by electrostatic forces. (C) 2016 Wiley Periodicals, Inc.
机译:在这项研究中,我们尝试检查导电性和聚电解质溶液浓度之间的关系,并通过层逐层自组装制备具有阳离子木质素的多层膜和多层膜。三甲基木质素季胺盐(TLQA)的氮含量为3.56%,羧甲基化聚(乙烯醇)(CMPVA)的羧基含量为0.62mmol / g。减毒的总反射光谱证实,TLQA和CMPVA成功地制造和组装。 TLQA的浓度与导电性具有多项式相关性[相关系数(R-2)= 0.9953],并且CMPVA的浓度与导电性线性(R-2 = 0.9819)。用UV可见分光光度计监测静电序列吸附过程,并通过原子力显微镜和扫描电子显微镜观察(TLQA / CMPVA)(N)(其中N是双膜的数量)的形态进行多层膜。当(TLQA / CMPVA)N多层膜的吸光度线性增加时,线性方程为Y = 0.0267 x + 0.07453,R-2为0.9735。当组装五层TLQA和CMPVA时,TLQA和CMPVA的表面根均方粗糙度分别为21.07和65.28nm。当层数增加时,膜表面粗糙度增加。通过电导率计确定水溶液中多层膜的稳定性。 (TLQA / CMPVA)(N)多层膜在水中稳定。研究结果首次证明了TLQA和CMPVA可以通过静电力组装和成功地组装。 (c)2016 Wiley期刊,Inc。

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