Antibacterial Biocomposites: MWCNT-Coated Hanji Cellulose Paper against E. coli

Author:

Amjad Mufarah1,Jeong Yunjo2,Shin Subin2,Kim Bogyeong3,Kim Namyeon3,Cho Hyunjin2,Lee Sang Seok2,Lee Sungbi2,Na Wonjin2,Jang Se Gyu2,Moon SeonYoung4,Lee Eun-Hee3,Son Jangyup2

Affiliation:

1. KIST School University of Science and Technology (UST)

2. Korea Institute of Science and Technology (KIST)

3. Pusan National University

4. AT-men company

Abstract

Abstract Cellulose paper has been studied for its application as an antibacterial filter, due to its robust porous structure, minimal ecological footprint, biocompatibility, and inherent antibacterial properties. Moreover, its properties can be further enhanced via surface functionalization with metal nanoparticle (NP) agents such as silver, zinc, etc. However, the synthesis of metallic NP is challenging, costly, and environmentally harmful. On the other hand, carbon nanotubes are highly suitable as an additive to cellulose paper due to their high electrical conductivity, excellent mechanical strength, ease of fabrication, and antibacterial properties. In this study, we coated multi-walled carbon nanotubes (MWCNTs) on Hanji, a traditional Korean paper, using a simple dipping method and investigated its antibacterial activity against Escherichia coli (E. coli). The MWCNT-coated Hanji exhibited an inhibition efficiency of ~ 93% against E. coli cells. Moreover, the MWCNT coating resulted in improved mechanical strength, enhanced electrical conductivity, and increased hydrophobicity of the Hanji. Furthermore, it was observed that MWCNTs exhibited exceptionally stable adhesion to the Hanji surface. Our finding shows that MWCNT-coated Hanji could be utilized as an antibacterial material that is used as masks, air pollution filters, wallpapers in hospitals and residential complexes, and an efficient platform for antiviral studies.

Publisher

Research Square Platform LLC

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