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由溶解纤维素引导的具有纳米针的超薄羟基磷灰石纳米带的精细组装

Delicate Assembly of Ultrathin Hydroxyapatite Nanobelts with Nanoneedles Directed by Dissolved Cellulose.

作者信息

Ma Xiaomin, Peng Wanjia, Su Wen, Yi Zeng, Chen Guangcan, Chen Xiangyu, Guo Bo, Li Xudong

机构信息

National Engineering Research Center for Biomaterials , Sichuan University , Chengdu 610064 , P. R. China.

Institute of Advanced Synthesis, School of Chemistry and Molecular Engineering , Nanjing Tech University , Nanjing 211816 , P. R. China.

出版信息

Inorg Chem. 2018 Apr 16;57(8):4516-4523. doi: 10.1021/acs.inorgchem.8b00275. Epub 2018 Apr 3.

Abstract

Living organisms make use of a variety of inorganic and organic components to form biogenic minerals with hierarchical structures and fascinating properties, triggering the development of biomimetic mineralization. The introduction of organic additive is a versatile strategy, and a wide range of organics have already been adopted to mimic biosystems designing and synthesizing advanced functional minerals. Insoluble cellulose is the most abundant polysaccharide in nature, but the insolubility has limited its extensive applications. In this study, we first find that concentrated calcium chloride aqueous solution is an effective solvent for cellulose, and dissolved cellulose plays a pivotal role in directing the formation of ultrathin hydroxyapatite (HA) nanobelts of ca. 10 nm in thickness. To investigate the assembling process of the belt, samples collected at different reaction times were observed. The results indicate that nanoneedles form first, and then they assemble into the prototype of nanobelts by lateral/longitudinal aggregation and arrangement. Subsequently, the nanobelts gradually become dense, transparent, and smooth via crystallographic fusion of adjacent nanoneedles, indicating the highly elaborated evolution of morphology resulted from a time-dependent process. During the evolution of nanobelts, dissolved cellulose is supposed to participate in the mineralization of HA via the bonding of its hydrophilic groups with phosphate groups and calcium ions and the interaction of cellulose molecules with HA crystal planes. These findings provide unique insight into the application of dissolved cellulose in aqueous solution and an inspiration of a bottom-up strategy for designing delicate mineral assemblies directed by insoluble organics.

摘要

生物体利用各种无机和有机成分来形成具有层次结构和迷人特性的生物矿物,从而推动了仿生矿化的发展。引入有机添加剂是一种通用策略,已有多种有机物被用于模拟生物系统来设计和合成先进的功能矿物。不溶性纤维素是自然界中最丰富的多糖,但不溶性限制了其广泛应用。在本研究中,我们首次发现浓氯化钙水溶液是纤维素的有效溶剂,溶解的纤维素在引导形成厚度约为10 nm的超薄羟基磷灰石(HA)纳米带中起关键作用。为了研究纳米带的组装过程,观察了在不同反应时间收集的样品。结果表明,首先形成纳米针,然后它们通过横向/纵向聚集和排列组装成纳米带的原型。随后,通过相邻纳米针的晶体融合,纳米带逐渐变得致密、透明和平滑,这表明形态的高度精细演化是一个时间依赖性过程。在纳米带的演化过程中,溶解的纤维素可能通过其亲水基团与磷酸基团和钙离子的结合以及纤维素分子与HA晶面的相互作用参与HA的矿化。这些发现为溶解纤维素在水溶液中的应用提供了独特的见解,并为设计由不溶性有机物引导的精细矿物组装体的自下而上策略提供了灵感。

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