Berruyer Pierrick, Gericke Martin, Moutzouri Pinelopi, Jakobi Dörthe, Bardet Michel, Karlson Leif, Schantz Staffan, Heinze Thomas, Emsley Lyndon
Institut des Sciences et Ingénierie Chimiques, Ecole Polytechnique Fédérale de Lausanne (EPFL), CH-1015 Lausanne, Switzerland.
Institute of Organic Chemistry and Macromolecular Chemistry, Friedrich Schiller University of Jena, Centre of Excellence for Polysaccharide Research, Humboldtstraße 10, D-07743 Jena, Germany.
Carbohydr Polym. 2021 Jun 15;262:117944. doi: 10.1016/j.carbpol.2021.117944. Epub 2021 Mar 15.
Dynamic Nuclear Polarization MAS NMR is introduced to characterize model methylcellulose ether compounds at natural isotopic abundance. In particular an approach is provided to determine the position of the methyl ether group within the repeating unit. Specifically, natural abundance C-C correlation experiments are used to characterize model 3-O-methylcellulose and 2,3-O-dimethylcellulose, and identify changes in chemical shifts with respect to native cellulose. We also probe the use of through space connectivity to the closest carbons to the CH to identify the substitution site on the cellulose ether. To this end, a series of methylcellulose ethers was prepared by a multistep synthesis approach. Key intermediates in these reactions were 2,6-O-diprotected thexyldimethylsilyl (TDMS) cellulose and 6-O-monoprotected TDMS cellulose methylated under homogeneous conditions. The products had degrees of substitution of 0.99 (3-O-methylcellulose) and 2.03 (2,3-O-dimethylcellulose) with exclusively regioselective substitution. The approaches developed here will allow characterization of the substitution patterns in cellulose ethers.
动态核极化核磁共振波谱法被引入以表征天然同位素丰度下的模型甲基纤维素醚化合物。特别地,提供了一种确定甲基醚基团在重复单元内位置的方法。具体而言,天然丰度的碳 - 碳相关实验用于表征模型3 - O - 甲基纤维素和2,3 - O - 二甲基纤维素,并识别相对于天然纤维素的化学位移变化。我们还探索了利用与CH最近的碳的空间连接性来确定纤维素醚上的取代位点。为此,通过多步合成方法制备了一系列甲基纤维素醚。这些反应中的关键中间体是在均相条件下甲基化的2,6 - O - 二保护的叔丁基二甲基硅烷基(TDMS)纤维素和6 - O - 单保护的TDMS纤维素。产物的取代度分别为0.99(3 - O - 甲基纤维素)和2.03(2,3 - O - 二甲基纤维素),且具有完全区域选择性取代。这里开发的方法将能够表征纤维素醚中的取代模式。