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A safe and sustainable bacterial cellulose nanofiber separator for lithium rechargeable batteries.


ABSTRACT: Bacterial cellulose nanofiber (BCNF) with high thermal stability produced by an ecofriendly process has emerged as a promising solution to realize safe and sustainable materials in the large-scale battery. However, an understanding of the actual thermal behavior of the BCNF in the full-cell battery has been lacking, and the yield is still limited for commercialization. Here, we report the entire process of BCNF production and battery manufacture. We systematically constructed a strain with the highest yield (31.5%) by increasing metabolic flux and improved safety by introducing a Lewis base to overcome thermochemical degradation in the battery. This report will open ways of exploiting the BCNF as a "single-layer" separator, a good alternative to the existing chemical-derived one, and thus can greatly contribute to solving the environmental and safety issues.

SUBMITTER: Gwon H 

PROVIDER: S-EPMC6765254 | biostudies-literature | 2019 Sep

REPOSITORIES: biostudies-literature

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A safe and sustainable bacterial cellulose nanofiber separator for lithium rechargeable batteries.

Gwon Hyeokjo H   Park Kitae K   Chung Soon-Chun SC   Kim Ryoung-Hee RH   Kang Jin Kyu JK   Ji Sang Min SM   Kim Nag-Jong NJ   Lee Sunghaeng S   Ku Jun-Hwan JH   Do Eun Cheol EC   Park Sujin S   Kim Minsang M   Shim Woo Yong WY   Rhee Hong Soon HS   Kim Jae-Young JY   Kim Jieun J   Kim Tae Yong TY   Yamaguchi Yoshitaka Y   Iwamuro Ryo R   Saito Shunsuke S   Kim Gahee G   Jung In-Sun IS   Park Hyokeun H   Lee Chanhee C   Lee Seungyeon S   Jeon Woo Sung WS   Jang Woo Dae WD   Kim Hyun Uk HU   Lee Sang Yup SY   Im Dongmin D   Doo Seok-Gwang SG   Lee Sang Yoon SY   Lee Hyun Chul HC   Park Jin Hwan JH  

Proceedings of the National Academy of Sciences of the United States of America 20190909 39


Bacterial cellulose nanofiber (BCNF) with high thermal stability produced by an ecofriendly process has emerged as a promising solution to realize safe and sustainable materials in the large-scale battery. However, an understanding of the actual thermal behavior of the BCNF in the full-cell battery has been lacking, and the yield is still limited for commercialization. Here, we report the entire process of BCNF production and battery manufacture. We systematically constructed a strain with the h  ...[more]

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