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Surface-Induced Frustration in Solid State Polymorphic Transition of Native Cellulose Nanocrystals

机译:天然纤维素纳米晶体固态多态性转变的表面诱导的挫折

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摘要

The presence of an interface generally influences crystallization of polymers from melt or from solution. Here, by contrast, we explore the effect of surface immobilization in a direct solid state polymorphic transition on individual cellulose nanocrystals (CNCs), extracted from a plant-based origin. The conversion from native cellulose I to cellulose III crystal occurred via a host guest inclusion of ethylene diamine inside the crystal. A 60% reduction in CNC width (height) in atomic force microscopy images suggested that when immobilized on a flat modified silica surface, the stresses caused by the inclusion or the subsequent regeneration resulted in exfoliation, hypothetically, between the van der Waals bonded sheets within the crystal. Virtually no changes in dimensions were visible when the polymorphic transition was performed to nonimmobilized CNCs in bulk dispersion. With reservations and by acknowledging the obvious dissimilarities, the exfoliation of cellulose crystal sheets can be viewed as analogous to exfoliation of 2D structures like graphene from a van der Waals stacked solid. Here, the detachment is, triggered by an inclusion of a guest molecule inside a host cellulose crystal and the stresses caused by the firm attachment of the CNC on a solid substrate, leading to detachment of molecular sheets or stacks of sheets.
机译:界面的存在通常会影响聚合物的结晶来自熔体或溶液。然而,通过对比,我们探讨了从植物原产地提取的单个纤维素纳米晶体(CNC)上的直接固态多态性转变中的表面固定化的影响。从本地纤维素I转化到纤维素III晶体的晶体在晶体内的乙二胺中包含。在原子力显微镜图像中的CNC宽度(高度)降低了60%,表明当固定在平坦改性的二氧化硅表面上时,由包含或随后的再生引起的应力在van der Wa粘接片之间产生剥离,导致剥离水晶。当在大量分散体中对非柔化的CNC进行多态转变时,几乎不可见尺寸的变化。通过预留和通过承认显而易见的差异,可以观察纤维素晶体片的剥离,与来自纸张固体的范德瓦尔斯等石墨烯等2D结构的剥离类似。这里,通过将来自宿主纤维素晶体内的客户分子和由CNC的牢固附着在固体基质上引起的应力引起的脱离引发,导致分子片或叠片的分子片或薄片的拆卸。

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  • 来源
    《Journal of Turbulence》 |2017年第6期|共8页
  • 作者单位

    Aalto Univ Sch Chem Engn Dept Bioprod &

    Biosyst POB 16300 Aalto 00076 Finland;

    Sorbonne Univ Chim Matiere Condensee Paris F-75005 Paris France;

    Aalto Univ Dept Appl Phys POB 11100 Aalto 00076 Finland;

    Aalto Univ Sch Chem Engn Dept Bioprod &

    Biosyst POB 16300 Aalto 00076 Finland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 流体力学;
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