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基于结构的水基蜘蛛丝蛋白-纳米粘土复合材料具有优异的气体和水蒸气阻隔性能。

Structural Insights into Water-Based Spider Silk Protein-Nanoclay Composites with Excellent Gas and Water Vapor Barrier Properties.

机构信息

FRM II und Physik-Department E21, Technische Universität München , James-Franck-Straße 1, Garching D-85748, Germany.

出版信息

ACS Appl Mater Interfaces. 2016 Sep 28;8(38):25535-43. doi: 10.1021/acsami.6b08287. Epub 2016 Sep 16.


DOI:10.1021/acsami.6b08287
PMID:27603150
Abstract

Nature reveals a great variety of inorganic-organic composite materials exhibiting good mechanical properties, high thermal and chemical stability, and good barrier properties. One class of natural bio-nanocomposites, e.g. found in mussel shells, comprises protein matrices with layered inorganic fillers. Inspired by such natural bio-nanocomposites, the cationic recombinant spider silk protein eADF4(κ16) was processed together with the synthetic layered silicate sodium hectorite in an all-aqueous setup. Drop-casting of this bio-nanocomposite resulted in a thermally and chemically stable film reflecting a one-dimensional crystal. Surprisingly, this bio-nanocomposite coating was, though produced in an all-aqueous process, completely water insoluble. Analyzing the structural details showed a low inner free volume due to the well-oriented self-assembly/alignment of the spider silk proteins on the nanoclay surface, yielding high oxygen and water vapor barrier properties. The here demonstrated properties in combination with good biocompatibility qualify this new bio-nanocomposite to be used in packaging applications.

摘要

自然界展现出了丰富多样的无机-有机复合材料,它们具有良好的机械性能、高热和化学稳定性以及良好的阻隔性能。一类天然生物纳米复合材料,例如在贻贝类贝壳中发现的,包含具有层状无机填充物的蛋白质基质。受此类天然生物纳米复合材料的启发,阳离子重组蜘蛛丝蛋白 eADF4(κ16)与合成层状硅酸盐钠蒙脱石一起在全水体系中进行加工。通过滴铸法制备了这种生物纳米复合材料,得到了具有一维晶体的热稳定和化学稳定的薄膜。令人惊讶的是,尽管这种生物纳米复合材料是在全水过程中制备的,但它完全不溶于水。分析结构细节表明,由于蜘蛛丝蛋白在纳米粘土表面上的良好取向自组装/排列,内部自由体积较低,从而具有高的氧气和水蒸气阻隔性能。这里展示的性能结合良好的生物相容性,使这种新型生物纳米复合材料有资格应用于包装领域。

相似文献

[1]
Structural Insights into Water-Based Spider Silk Protein-Nanoclay Composites with Excellent Gas and Water Vapor Barrier Properties.

ACS Appl Mater Interfaces. 2016-9-16

[2]
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[3]
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[4]
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[5]
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[6]
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[7]
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[8]
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Carbohydr Polym. 2015-4-30

[9]
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ACS Biomater Sci Eng. 2022-8-8

[10]
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Nanomaterials (Basel). 2019-10-19

引用本文的文献

[1]
Recent Advances in the Hydrogen Gas Barrier Performance of Polymer Liners and Composites for Type IV Hydrogen Storage Tanks: Fabrication, Properties, and Molecular Modeling.

Polymers (Basel). 2025-4-30

[2]
Affine Deformation and Self-Assembly Alignment in Hydrogel Nanocomposites.

Macromolecules. 2023-11-22

[3]
Systematic Study of the Nanostructures of Exfoliated Polymer Nanocomposites.

Macromolecules. 2023-9-14

[4]
Layering-Triggered Delayering with Exfoliated High-Aspect Ratio Layered Silicate for Enhanced Gas Barrier, Mechanical Properties, and Degradability of Biodegradable Polymers.

Glob Chall. 2020-5-27

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