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Number of items: 11.

Malvankar, N. S. and King, G. M. and Lovley, D. R.. (2015) Centimeter-long electron transport in marine sediments via conductive minerals. Isme Journal, 9 (2). pp. 527-531.

Malvankar, N. S. and Yalcin, S. E. and Tuominen, M. T. and Lovley, D. R.. (2014) Visualization of charge propagation along individual pili proteins using ambient electrostatic force microscopy. Nat Nano, 9 (12). pp. 1012-1017.

Malvankar, N. S. and Tuominen, M. T. and Lovley, D. R.. (2012) Biofilm Conductivity is a Decisive Variable for High-current-density Geobacter Sulfurreducens Microbial Fuel Cells. Energy & Environmental Science, 5 (2). pp. 5790-5797.

Malvankar, N. S. and Lau, J. and Nevin, K. P. and Franks, A. E. and Tuominen, M. T. and Lovley, D. R.. (2012) Electrical Conductivity in a Mixed-Species Biofilm. Applied and Environmental Microbiology, 78 (16). pp. 5967-5971.

Malvankar, N. S. and Tuominen, M. T. and Lovley, D. R.. (2012) Lack of Cytochrome Involvement in Long-range Electron Transport through Conductive Biofilms and Nanowires of Geobacter Sulfurreducens. Energy & Environmental Science, 5 (9). pp. 8651-8659.

Malvankar, N. S. and Lovley, D. R.. (2012) Microbial Nanowires: A New Paradigm for Biological Electron Transfer and Bioelectronics. Chemsuschem, 5 (6). pp. 1039-1046.

Malvankar, N. S.; and Tuominen, Mark T. and Rotello, Vincent M. and Lovley, D. R.. Center for Hierarchical Manufacturing. (2012) A Natural Route to Nanowires and Energy Storage. Center for Hierarchical Manufacturing. (Unpublished)

Malvankar, N. S. and Mester, T. and Tuominen, M. T. and Lovley, D. R.. (2012) Supercapacitors Based on c-Type Cytochromes Using Conductive Nanostructured Networks of Living Bacteria. Chemphyschem, 13 (2). pp. 463-468.

Malvankar, N. S.; and Nikhil, S.; and Tuominen, M. T. and Lovley, D. R.. (2011) Biofilm Conductivity Regulates microbial fuel cell current density. Energy and Environmental Science.

Malvankar, N. S.; and Nikhil, S.; and Mester, T.; and Tuominen, M. T. and Lovley, D. R.. (2011) Supercapacitors Based on C-Type cytochromes Using Electrically Conductive Nanostructured Networks of Living Bacteria. CHEMPHYSCHEM.

Malvankar, N. S. and Vargas, M. and Nevin, K. P. and Franks, A. E. and Leang, C. and Kim, B. C. and Inoue, K. and Mester, T. and Covalla, S. F. and Johnson, J. P. and Rotello, V. M. and Tuominen, M. T. and Lovley, D. R.. (2011) Tunable metallic-like conductivity in microbial nanowire networks. Nature Nanotechnology, 6 (9). pp. 573-579. ISSN 1748-3387

This list was generated on Sat Oct 5 16:27:53 2024 EDT.