Bottom‐Up Assembling Hierarchical Enamel‐Like Bulk Materials with Excellent Optical and Mechanical Properties for Tooth Restoration

Author:

Zhang Shan12,Xu Wu1,Wu Leping1,Li Xiaxin1,Liu Xingzi1,Wu Xiaoting1,Wu Guomin1,Zheng Shunli1,Cao Chris Ying1,Zhou Zheng3,Wong Hai Ming4,Zhang Xu2,Li Quan‐Li15ORCID

Affiliation:

1. Key Laboratory of Oral Diseases Research of Anhui Province College & Hospital of Stomatology Anhui Medical University 81 Meishan Road Hefei 230032 China

2. Tianjin Key Laboratory of Oral Soft and Hard Tissues Restoration and Regeneration School and Hospital of Stomatology Tianjin Medical University 22 Qixiangtai Road, Hepin District Tianjin 300070 China

3. School of Dentistry University of Detroit Mercy Detroit MI 482082576 USA

4. Faculty of Dentistry The University of Hong Kong The Prince Philip Dental Hospital 34 Hospital Road Hong Kong 999077 China

5. The institute of Oral Science Department of Stomatology Longgang Otorhinolaryngology Hospital of Shenzhen Shenzhen 518172 China

Abstract

AbstractEnamel has good optical and mechanical properties because of its multiscale hierarchical structure. Biomimetic construction of enamel‐like 3D bulk materials at nano‐, micro‐, mesh‐ and macro‐levels is a challenge. A novel facile, cost‐effective, and easy large‐scale bottom‐up assembly strategy to align 1D hydroxyapatite (HA) nanowires bundles to 3D hierarchical enamel structure with the nanowires bundles layer‐by‐layer interweaving orientation, is reported. In the strategy, the surface of oleate templated ultralong HA nanowires with a large aspect ratio is functionalized with amphiphilic 10‐methacryloyloxydecyl dihydrogen phosphate (MDP). Furtherly, the MDP functionalized HA nanowire bundles are assembled layer‐by‐layer with oriented fibers in a single layer and cross‐locked between layers at a certain angle at mesoscale and macroscale in the viscous bisphenol A‐glycidyl methacrylate (Bis‐GMA) ethanol solution by shear force induced by simple agitation and high‐speed centrifugation. Finally, the excessive Bis‐GMA and ethanol are removed, and (Bis‐GMA)‐(MDP‐HA nanowire bundle) matrix is densely packed under hot pressing and polymerized to form bulk enamel‐like materials. The composite has superior optical properties and comparable comprehensive mechanic performances through a combination of strength, hardness, toughness, and friction. This method may open new avenues for controlling the nanowires assembly to develop hierarchical nanomaterials with superior properties for many different applications.

Funder

Natural Science Foundation of Anhui Province

National Natural Science Foundation of China

Publisher

Wiley

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