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Colloids and Surfaces. B, Biointerfaces|June 5, 2007
Adhesion characteristics of two Burkholderia cepacia strains examined using colloid probe microscopy and gradient force analysisMichael B Salerno, Xu Li, Bruce E LoganApplied Microbiology and Biotechnology|January 14, 2005
Evaluation of procedures to acclimate a microbial fuel cell for electricity productionJung Rae Kim, Booki Min, Bruce E LoganWater Research|January 24, 2006
Biological hydrogen production by Clostridium acetobutylicum in an unsaturated flow reactorHusen Zhang, Mary Ann Bruns, Bruce E LoganWater Research|November 5, 2020
Addition of a carbon fiber brush improves anaerobic digestion compared to external voltage applicationGahyun Baek, Pascal E Saikaly, Bruce E LoganEnvironmental Science & Technology Letters|April 18, 2014
Microbial Reverse-Electrodialysis Electrolysis and Chemical-Production Cell for H2 Production and CO2 SequestrationXiuping Zhu, Marta C Hatzell, Bruce E LoganScience (New York, N.Y.)|March 3, 2012
Energy capture from thermolytic solutions in microbial reverse-electrodialysis cellsRoland D Cusick, Younggy Kim, Bruce E LoganWater Research|May 22, 2015
Impact of electrode configurations on retention time and domestic wastewater treatment efficiency using microbial fuel cellsKyoung-Yeol Kim, Wulin Yang, Bruce E LoganLangmuir : the ACS Journal of Surfaces and Colloids|November 17, 2004
Importance of molecular details in predicting bacterial adhesion to hydrophobic surfacesMichael B Salerno, Bruce E Logan, Darrell VelegolBioelectrochemistry (Amsterdam, Netherlands)|May 14, 2018
Electrotrophic activity and electrosynthetic acetate production by Desulfobacterium autotrophicum HRM2Zehra Zaybak, Bruce E Logan, John M PisciottaBiotechnology and Bioengineering|August 7, 2008
Enzymatic hydrolysis of cellulose coupled with electricity generation in a microbial fuel cellFarzaneh Rezaei, Tom L Richard, Bruce E LoganPageof 46