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Synthesis and characterization of Schiff bases from chitosan and salicylaldehyde derivatives

机译:壳聚糖和水杨醛衍生物的席夫碱的合成与表征

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The introduction of salicylaldehyde and derivatives at the C-2 nitrogen position of chitosan with low degree of acetylation has been investigated.Chitosan was reacted with salicylaldehyde and its 5-bromo,5-chloro,5-nitro,5-methyl and 5-methoxy derivatives.The resulting biopolymeric Schiff bases were characterized by elemental analysis (C,H,N),IR spectroscopy,~1H NMR spectroscopy and conductimetric titration.The ~1H NMR spectroscopy was used for the determination of degree of acetylation of chitosan.The degree of acetylation was determined from the ratio between the integrated area of the proton signal corresponding to the acetamido group (H-Ac) and that of the proton (H-2) of the GlucN unit.A procedure for the determination of the degree of substitution based on ~1H NMR data is proposed.The substitution degree was calculated from the ratio between the integrated area of the proton signal of the inline group and of the proton (H-2) of the GlucN unit.Substitution degrees varying from 4.6 to 68.5% depending on the R group have been measured.No significant change on the acetylation degree during the reaction was observed.
机译:研究了乙酰化度低的壳聚糖在C-2氮位上引入水杨醛及其衍生物的方法。壳聚糖与水杨醛及其5-溴,5-氯,5-硝基,5-甲基和5-甲氧基反应通过元素分析(C,H,N),IR光谱,〜1H NMR光谱和电导滴定对所得的生物聚合席夫碱进行表征。〜1H NMR光谱用于确定壳聚糖的乙酰化程度。由对应于乙酰氨基的质子信号的积分面积(H-Ac)与GlucN单元的质子(H-2)的积分面积之比,确定乙酰化的程度。取代度的测定方法根据〜1H NMR数据提出了取代度,该取代度是根据直链基团质子信号的积分面积与GlucN单元质子(H-2)的积分面积之比计算得出的,取代度为4.6取决于R基团,测得的Ab含量为68.5%。在反应过程中未观察到乙酰化程度的明显变化。

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