A general aerosol-assisted biosynthesis of functional bulk nanocomposites

Author:

Guan Qing-Fang1,Han Zi-Meng1,Luo Tong-Tong1,Yang Huai-Bin1,Liang Hai-Wei1,Chen Si-Ming1,Wang Guang-Sheng2,Yu Shu-Hong13ORCID

Affiliation:

1. Division of Nanomaterials & Chemistry, Hefei National Laboratory for Physical Sciences at the Microscale, Department of Chemistry, University of Science and Technology of China, Hefei 230026, China

2. School of Chemistry and Environment, Beihang University, Beijing 100191, China

3. CAS Center for Excellence in Nanoscience, Collaborative Innovation Center of Suzhou Nano Science and Technology, Hefei Science Center, Department of Chemistry, University of Science and Technology of China, Hefei 230026, China

Abstract

Abstract Although a variety of nanoparticles with better-than-bulk material performances can be synthesized, it remains a challenge to scale the extraordinary properties of individual nanoscale units to the macroscopic level for bulk nanostructured materials. Here, we report a general and scalable biosynthesis strategy that involves simultaneous growth of cellulose nanofibrils through microbial fermentation and co-deposition of various kinds of nanoscale building blocks (NBBs) through aerosol feeding on solid culture substrates. We employ this biosynthesis strategy to assemble a wide range of NBBs into cellulose nanofibril-based bulk nanocomposites. In particular, the biosynthesized carbon nanotubes/bacterial cellulose nanocomposites that consist of integrated 3D cellulose nanofibril networks simultaneously achieve an extremely high mechanical strength and electrical conductivity, and thus exhibit outstanding performance as high-strength lightweight electromagnetic interference shielding materials. The biosynthesis approach represents a general and efficient strategy for large-scale production of functional bulk nanocomposites with enhanced performances for practical applications. Industrial-scale production of these bulk nanocomposite materials for practical applications can be expected in the near future.

Funder

National Natural Science Foundation of China

Center for Alcohol Studies

National Basic Research Program of China

Publisher

Oxford University Press (OUP)

Subject

Multidisciplinary

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