Jiang Zhiwei, Fang Yan, Xiang Junfeng, Ma Yanping, Lu Ang, Kang Hongliang, Huang Yong, Guo Hongxia, Liu Ruigang, Zhang Lina
State Key Laboratory of Polymer Physics and Chemistry, Beijing National Laboratory of Molecular Sciences, Institute of Chemistry, Chinese Academy of Sciences , Beijing 100190, China.
J Phys Chem B. 2014 Aug 28;118(34):10250-7. doi: 10.1021/jp501408e. Epub 2014 Aug 15.
The dissolution of cellulose in NaOH/urea aqueous solution at low temperature is a key finding in cellulose science and technology. In this paper, (15)N and (23)Na NMR experiments were carried out to clarify the intermolecular interactions in cellulose/NaOH/urea aqueous solution. It was found that there are direct interactions between OH(-) anions and amino groups of urea through hydrogen bonds and no direct interaction between urea and cellulose. Moreover, Na(+) ions can interact with both cellulose and urea in an aqueous system. These interactions lead to the formation of cellulose-NaOH-urea-H2O inclusion complexes (ICs). (23)Na relaxation results confirmed that the formation of urea-OH(-) clusters can effectively enhance the stability of Na(+) ions that attracted to cellulose chains. Low temperature can enhance the hydrogen bonding interaction between OH(-) ions and urea and improve the binding ability of the NaOH/urea/H2O clusters that attached to cellulose chains. Cryo-TEM observation confirmed the formation of cellulose-NaOH-urea-H2O ICs, which is in extended conformation with mean diameter of about 3.6 nm and mean length of about 300 nm. Possible 3D structure of the ICs was proposed by the M06-2X/6-31+G(d) theoretical calculation, revealing the O3H···O5 intramolecular hydrogen bonds could remain in the ICs. This work clarified the interactions in cellulose/NaOH/urea aqueous solution and the 3D structure of the cellulose chain in dilute cellulose/NaOH/urea aqueous solution.
纤维素在低温NaOH/尿素水溶液中的溶解是纤维素科学与技术领域的一项关键发现。本文通过(15)N和(23)Na核磁共振实验,阐明纤维素/NaOH/尿素水溶液中的分子间相互作用。研究发现,OH(-)阴离子与尿素的氨基之间通过氢键存在直接相互作用,而尿素与纤维素之间不存在直接相互作用。此外,在水体系中,Na(+)离子可同时与纤维素和尿素相互作用。这些相互作用导致形成纤维素-NaOH-尿素-H2O包合物(ICs)。(23)Na弛豫结果证实,尿素-OH(-)簇的形成可有效增强吸引到纤维素链上的Na(+)离子的稳定性。低温可增强OH(-)离子与尿素之间的氢键相互作用,并提高附着在纤维素链上的NaOH/尿素/H2O簇的结合能力。冷冻透射电子显微镜观察证实了纤维素-NaOH-尿素-H2O ICs的形成,其呈伸展构象,平均直径约为3.6 nm,平均长度约为300 nm。通过M06-2X/6-31+G(d)理论计算提出了ICs可能的三维结构,揭示了O3H···O5分子内氢键可保留在ICs中。这项工作阐明了纤维素/NaOH/尿素水溶液中的相互作用以及稀纤维素/NaOH/尿素水溶液中纤维素链的三维结构。