甲壳素
纳米晶
纳米技术
材料科学
纳米尺度
化学工程
分子
分子动力学
多糖
原子力显微镜
化学
化学物理
壳聚糖
有机化学
计算化学
工程类
作者
Ayhan Yurtsever,Pei‐Xi Wang,Fabio Priante,Ygor Morais Jaques,Kazuki Miyata,Mark J. MacLachlan,Adam S. Foster,Takeshi Fukuma
出处
期刊:Small methods
[Wiley]
日期:2022-06-09
卷期号:6 (9): e2200320-e2200320
被引量:31
标识
DOI:10.1002/smtd.202200320
摘要
Abstract Chitin is one of the most abundant and renewable natural biopolymers. It exists in the form of crystalline microfibrils and is the basic structural building block of many biological materials. Its surface crystalline structure is yet to be reported at the molecular level. Herein, atomic force microscopy (AFM) in combination with molecular dynamics simulations reveals the molecular‐scale structural details of the chitin nanocrystal (chitin NC)–water interface. High‐resolution AFM images reveal the molecular details of chitin chain arrangements at the surfaces of individual chitin NCs, showing highly ordered, stable crystalline structures almost free of structural defects or disorder. 3D‐AFM measurements with submolecular spatial resolution demonstrate that chitin NC surfaces interact strongly with interfacial water molecules creating stable, well‐ordered hydration layers. Inhomogeneous encapsulation of the underlying chitin substrate by these hydration layers reflects the chitin NCs’ multifaceted surface character with different chain arrangements and molecular packing. These findings provide important insights into chitin NC structures at the molecular level, which is critical for developing the properties of chitin‐based nanomaterials. Furthermore, these results will contribute to a better understanding of the chemical and enzymatic hydrolysis of chitin and other native polysaccharides, which is also essential for the enzymatic conversion of biomass.
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