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Metal chloride-catalyzed acetylation of starch: Synthesis and characterization

机译:金属氯化物催化淀粉乙酰化:合成和表征

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摘要

Acylation of polysaccharides is a commercially important reaction and is usually performed in a process involving the polysaccharide, an acid anhydride, and an inorganic acid. As an alternative to inorganic acid, many catalysts, including some metal chlorides, have been previously reported as catalysts. In this work, we took a more comprehensive look at several metal chlorides to observe trends and reactivities among them, particularly relating to reaction temperature, time, and amount of acetic anhydride used. Iodine was also included for comparison. Almost all the metal chlorides studied were found to be active as catalysts for the acetylation of starch under suitable reaction conditions. However, each metal chloride had a somewhat different reactivity with a different optimal temperature needed for satisfactory reactions to take place. The molecular weight of the starch acetate products decreased in all cases observed. The reactivity trends among the metal halides seemed to correlate both with the ease of complexation between the halide and the substrate and with the acidity of the metal chloride. Characterization was achieved through C-13 NMR, FT-IR, thermogravimetric analysis and size exclusion chromatography.
机译:多糖的酰化是商业上重要的反应,通常在涉及多糖,酸酐和无机酸的过程中进行。作为无机酸的替代方案,许多催化剂包括一些金属氯化物,已被报告为催化剂。在这项工作中,我们采取了更全面的看待几种金属氯化物以观察它们之间的趋势和反应,特别是与反应温度,时间和所用乙酸酐的量相关。还包括碘以进行比较。几乎所有所研究的所有金属氯化物都被发现为在合适的反应条件下作为淀粉乙酰化的催化剂活性。然而,每种金属氯化物具有稍微不同的反应性,其具有令人满意的反应所需的不同的最佳温度。在观察到的所有病例中,淀粉醋酸盐产物的分子量降低。金属卤化物中的反应性趋势似乎随着卤化物和基材之间的易于粘合和金属氯化物的酸度而相关。通过C-13 NMR,FT-IR,热重分析和尺寸排阻色谱法实现表征。

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