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Research (Washington, D.C.)|March 9, 2026
Electroactive Microbes Short-Circuit the Passive Film to Corrode Stainless SteelYuting Jin, Qin Cheng, Dake Xu, et al.Bioelectrochemistry (Amsterdam, Netherlands)|July 16, 2014
Electron mediators accelerate the microbiologically influenced corrosion of 304 stainless steel by the Desulfovibrio vulgaris biofilmPeiyu Zhang, Dake Xu, Yingchao Li, et al.Environmental Science & Technology|April 21, 2026
Fe(III) Oxide Reduction Bypassing Outer-Surface Cytochromes in a Marine Respiratory AnaerobeJiaxin Li, Dawn E Holmes, Dake Xu, et al.Bioelectrochemistry (Amsterdam, Netherlands)|April 10, 2025
Riboflavin-mediated extracellular electron transfer enhances microbiologically influenced corrosion of 316L stainless steel by Enterococcus faecalisXiaomeng Liu, Enze Zhou, Yongqiang Fan, et al.Current Opinion in Microbiology|May 14, 2022
Engineering microbial systems for the production and functionalization of biomaterialsYuanyuan Huang, Mingyi Zhang, Jie Wang, et al.Frontiers in Bioengineering and Biotechnology|July 23, 2024
Insight into a single-chamber air-cathode microbial fuel cell for nitrate removal and ecological rolesXiaojun Jin, Nuan Yang, Dake Xu, et al.Materials Science & Engineering. C, Materials for Biological Applications|January 13, 2015
Microbiological influenced corrosion resistance characteristics of a 304L-Cu stainless steel against Escherichia coliLi Nan, Dake Xu, Tingyue Gu, et al.NPJ Biofilms and Microbiomes|April 10, 2026
Preemptive biofilm colonization blocks microbial metal corrosionPeiyu Ma, Di Wang, Weixin Kong, et al.Mlife|July 1, 2024
Elucidating microbial iron corrosion mechanisms with a hydrogenase-deficient strain of Desulfovibrio vulgarisDi Wang, Toshiyuki Ueki, Peiyu Ma, et al.Bioelectrochemistry (Amsterdam, Netherlands)|May 4, 2018
Severe microbiologically influenced corrosion of S32654 super austenitic stainless steel by acid producing bacterium Acidithiobacillus caldus SM-1Yuqiao Dong, Baota Jiang, Dake Xu, et al.Pageof 10