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Reconsideration of the conformation of methyl cellulose and hydroxypropyl methyl cellulose ethers in aqueous solution

机译:重新介绍甲基纤维素和羟丙基甲基纤维素醚在水溶液中的构型

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The structure and conformation of methyl cellulose (MC) and hydroxypropyl methyl cellulose (HpMC) ether samples dissolved in dilute aqueous (D _(2) O) solutions at a temperature of 25 °C were reconsidered in detail based on the experimental results obtained using small- and wide-angle neutron scattering (S-WANS) techniques in a range of scattering vectors ( q ) from 0.05 to 100 nm ~(?1) . MC samples exhibited an average degree of substitution (DS) by methyl groups per glucose unit of DS = 1.8 and the weight average molar mass of M _(w) = 37 × 10 ~(3) and 79 × 10 ~(3) g mol ~(?1) . On the other hand, HpMC samples possessed the average molar substitution number (MS) by hydroxypropyl groups per glucose unit of MS = 0.25, DS = 1.9, and M _(w) = 50 × 10 ~(3) and 71 × 10 ~(3) g mol ~(?1) . The concentration-reduced scattering intensity data gathered into a curve for the solutions of identical sample species clearly demonstrated the relationship I ( q ) c ~(?1) ∝ q ~(?1) in a q range from 0.05 to 2.0 nm ~(?1) , and small interference peaks were found at q ~ 7 and 17 nm ~(?1) for all examined sample solutions. These observations strongly revealed that form factors for both the MC and HpMC samples were perfectly described with that for long, rigid rod particles with average diameters of 0.8 and 0.9 nm, respectively, and with an inner structure with characteristic mean spacing distances of ca. 0.9 and 0.37 nm, respectively, regardless of the chemically modified conditions and molar masses. A rationally speculated structure model for the MC and HpMC samples dissolved in aqueous solution was proposed.
机译:基于使用的实验结果,详细重新考虑甲基纤维素(MC)和羟丙基甲基纤维素(HPMC)醚样品的甲基纤维素(MC)和羟丙基甲基纤维素(HPMC)醚样品的实施例小型和广角中子散射(S-WAN)在一系列散射载体(Q)范围内的技术(Q)为0.05至100nm〜(?1)。 MC样品通过DS = 1.8的每个葡萄糖单元的甲基和M = 37×10〜(3)和79×10〜(3)G的重量平均摩尔质量的平均取代(DS)的平均取代度(DS)。 mol〜(?1)。另一方面,HPMC样品通过MS = 0.25,DS = 1.9和M _(W)= 50×10〜(3)和71×10〜 (3)g mol〜(?1)。收集到相同样本物种溶液中的浓度降低的散射强度数据清楚地证明了AQ范围内的关系I(Q)C〜(α1)αQ〜(?1)〜2.0nm〜(? 1),对于所有检查样品溶液,在Q〜7和17nm〜(β1)中发现小干扰峰。这些观察结果略微揭示了MC和HPMC样品的形状因子,其具有用于平均直径为0.8和0.9nm的长,刚性杆颗粒的完全描述,并且具有具有CA的特征平均间距距离的内部结构。无论化学改性条件和摩尔质量分别,分别为0.9和0.37nm。提出了溶解在水溶液中的MC和HPMC样品的合理推测结构模型。

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