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Employing perichromism for probing the properties of carboxymethyl cellulose films: an expedient, accurate method for the determination of the degree of substitution of the biopolymer derivative

机译:利用变色法探测羧甲基纤维素膜的特性:一种测定生物聚合物衍生物取代度的简便,准确的方法

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The properties of films of carboxymethyl cellulose, CMC, of different degree of substitution, DS, have been examined by the use of perichromic indicators (probes). The film properties that have been determined are: empirical polarity, ET(33); “acidity”, α; “basicity”, β; and dipolarity/polarizability, π*. This has been achieved by employing the following perichromic probes: 4-nitroaniline, 4-nitroanisole, 4-nitro-N,N-dimethylaniline, and 2,6-dichloro-4-(2,4,6-triphenyl-pyridinium-1-yl)phenolate, WB. The correlations between both ET(33)- or π* and DS were found to be linear; that between β and DS is a second order polynomial; no obvious correlation was found between α and DS. The polarities of CMC films are in the range of those of butyl alcohols. As models for CMC, we have employed cellulose plus CMC of high DS; oxidized cellulose with degree of oxidation = 0.5; sodium glucuronate. The former model behaved akin to CMC, but the plots of the perichromic properties versus DS showed different slopes/intercepts. FTIR data and molecular dynamics simulations on the solvation of WB have shown that this difference can be traced to more efficient hydrogen bonding between the film of the model and the probe. This affects the intra-molecular charge-transfer energy of the latter, leading to different responses to the variation of DS. Based on the excellent linear correlation between ET(33) and DS, for CMC from different origins, we suggest that perichromism is a simple, accurate, and expedient alternative for the determination of DS of the biopolymer derivative.
机译:通过使用变色指示剂(探针)已检测了不同取代度DS的羧甲基纤维素CMC膜的性能。已经确定的膜性质是:经验极性,E T (33); “酸度”,α; “碱度”,β;偶极/极化率π*。这是通过使用以下的变色探针实现的:4-硝基苯胺,4-硝基苯甲醚,4-硝基-N,N-二甲基苯胺和2,6-二氯-4-(2,4,6-三苯基-吡啶鎓-1苯基)酚盐,WB。发现E T (33)-或π*与DS之间的线性关系。 β与DS之间是二阶多项式;在α和DS之间没有发现明显的相关性。 CMC膜的极性在丁醇的极性范围内。作为CMC的模型,我们使用了纤维素和高DS的CMC;氧化程度为0.5的氧化纤维素;葡萄糖醛酸钠。前一个模型的行为类似于CMC,但是其变色特性与DS的关系图显示出不同的斜率/截距。 WB溶剂化的FTIR数据和分子动力学模拟表明,这种差异可以追溯到模型膜与探针之间更有效的氢键结合。这影响了后者的分子内电荷转移能,导致对DS变化的不同响应。基于E T (33)与DS之间的出色线性相关性,对于来自不同来源的CMC,我们建议使用变色法测定生物聚合物衍生物的DS是一种简单,准确且方便的选择。

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