Litcius/Paper detail

Nacre‐Inspired Bacterial Cellulose/Mica Nanopaper with Excellent Mechanical and Electrical Insulating Properties by Biosynthesis

Wen‐Bin Sun, Zi‐Meng Han, Xin Yue, Hao‐Yu Zhang, Kunpeng Yang, Zhao‐Xiang Liu, De‐Han Li, Yuxiang Zhao, Zhang‐Chi Ling, Huai‐Bin Yang, Qing‐Fang Guan, Shu‐Hong Yu

2023Advanced Materials85 citationsDOI

Abstract

Abstract The exploration of extreme environments has become necessary for understanding and changing nature. However, the development of functional materials suitable for extreme conditions is still insufficient. Herein, a kind of nacre‐inspired bacterial cellulose (BC)/synthetic mica (S‐Mica) nanopaper with excellent mechanical and electrical insulating properties that has excellent tolerance to extreme conditions is reported. Benefited from the nacre‐inspired structure and the 3D network of BC, the nanopaper exhibits excellent mechanical properties, including high tensile strength (375 MPa), outstanding foldability, and bending fatigue resistance. In addition, S‐Mica arranged in layers endows the nanopaper with remarkable dielectric strength (145.7 kV mm −1 ) and ultralong corona resistance life. Moreover, the nanopaper is highly resistant to alternating high and low temperatures, UV light, and atomic oxygen, making it an ideal candidate for extreme environment‐resistant materials.

Topics & Concepts

Materials scienceMicaBacterial celluloseComposite materialCelluloseUltimate tensile strengthBendingChemical engineeringEngineeringCalcium Carbonate Crystallization and InhibitionAdvanced Materials and MechanicsSurface Modification and Superhydrophobicity
Nacre‐Inspired Bacterial Cellulose/Mica Nanopaper with Excellent Mechanical and Electrical Insulating Properties by Biosynthesis | Litcius