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Kanak, A. (2014). Benzene and beyond: mechanisms of novel anaerobic aromatic degradation pathways in Geobacter Daltonii. Georgia State University.

Zhao, Z., Zhang, Y., Li, Y., Dang, Y., Zhu, T., & Quan, X. (2017). Potentially shifting from interspecies hydrogen transfer to direct interspecies electron transfer for syntrophic metabolism to resist acidic impact with conductive carbon cloth. Chemical Engineering Journal, 313, 10-18.

Viulu, S., Nakamura, K., Okada, Y., Saitou, S., & Takamizawa, K. (2013). Geobacterluticola sp. nov., an Fe (III)-reducing bacterium isolated from lotus field mud. International journal of systematic and evolutionary microbiology, 63(Pt_2), 442-448.

Holmes, D. E., Dang, Y., Walker, D. J., & Lovley, D. R. (2016). The electrically conductive pili of Geobacter species are a recently evolved feature for extracellular electron transfer. Microbial genomics, 2(8).

Holmes, D. E., Giloteaux, L., Chaurasia, A. K., Williams, K. H., Luef, B., Wilkins, M. J., ... & Lovley, D. R. (2015). Evidence of Geobacter-associated phage in a uranium-contaminated aquifer. The ISME journal, 9(2), 333-346.

Banala, U. K., Das, N. P. I., & Toleti, S. R. (2021). Microbial interactions with uranium: Towards an effective bioremediation approach. Environmental Technology & Innovation, 21, 101254.