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Microbial Coppersmiths

delete2020-10-01
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L
Leonard M. Tender
S
Sarah M. Glaven *
DOI:10.1016/j.joule.2020.09.016delete
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Abstract

Abstract

En 中文
Electrogenic microbes utilize anodes as metabolic electron acceptors producing electrical current. Recently, Beuth et al. reported that, when grown on copper anodes in the presence of sulfate, they can induce the precipitation of copper sulfide, which becomes incorporated into the growing biofilms, increasing their conductivity and net electrical output. This biogenic biofilm doping presents a new strategy for improving current density of microbial electrochemical technologies and for considering new applications in microbial electronics.
Keywords:
GEOBACTER-SULFURREDUCENS
BIOFILMS
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

Joule cover
Joule
IF:
35.4
Papers:
2.3K
Citations:
4.5W

Organization

United States Department of Defense cover
United States Department of Defense
Scholars:
2.8W
Papers: 2.3W
Citations: 172
Cited Papers

Cited Papers

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errStrycharz-Glaven, Sarah M.; Snider, Rachel M.; Guiseppi-Elie, Anthony; Tender, Leonard M.
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Long-range electron transport in Geobacter sulfurreducens biofilms is redox gradient-driven
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errSnider, Rachel M.; Strycharz-Glaven, Sarah M.; Tsoi, Stanislav D.; Erickson, Jeffrey S.; Tender, Leonard M.
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Engineering Geobacter sulfurreducens to produce a highly cohesive conductive matrix with enhanced capacity for current production
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errLeang, Ching; Malvankar, Nikhil S.; Franks, Ashley E.; Nevin, Kelly P.; Lovley, Derek R.
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Self-Constructed Electrically Conductive Bacterial Networks
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errNakamura, Ryuhei; Kai, Fumiyoshi; Okamoto, Akihiro; Newton, Greg J.; Hashimoto, Kazuhito
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NanoSIMS imaging reveals metabolic stratification within current-producing biofilms
err2019-09-23
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errChadwick, Grayson L.; Otero, Fernanda Jimenez; Gralnick, Jeffrey A.; Bond, Daniel R.; Orphan, Victoria J.
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