B. Sen-Dogan Et Al. , "Enhancement of the Start-Up Time for Microliter-Scale Microbial Fuel Cells (mu MFCs) via the Surface Modification of Gold Electrodes," MICROMACHINES , vol.11, no.7, 2020
Sen-Dogan, B. Et Al. 2020. Enhancement of the Start-Up Time for Microliter-Scale Microbial Fuel Cells (mu MFCs) via the Surface Modification of Gold Electrodes. MICROMACHINES , vol.11, no.7 .
Sen-Dogan, B., Okan, M., Afsar-Erkal, N., Ozgur, E., Zorlu, O., & KÜLAH, H., (2020). Enhancement of the Start-Up Time for Microliter-Scale Microbial Fuel Cells (mu MFCs) via the Surface Modification of Gold Electrodes. MICROMACHINES , vol.11, no.7.
Sen-Dogan, Begum Et Al. "Enhancement of the Start-Up Time for Microliter-Scale Microbial Fuel Cells (mu MFCs) via the Surface Modification of Gold Electrodes," MICROMACHINES , vol.11, no.7, 2020
Sen-Dogan, Begum Et Al. "Enhancement of the Start-Up Time for Microliter-Scale Microbial Fuel Cells (mu MFCs) via the Surface Modification of Gold Electrodes." MICROMACHINES , vol.11, no.7, 2020
Sen-Dogan, B. Et Al. (2020) . "Enhancement of the Start-Up Time for Microliter-Scale Microbial Fuel Cells (mu MFCs) via the Surface Modification of Gold Electrodes." MICROMACHINES , vol.11, no.7.
@article{article, author={Begum Sen-Dogan Et Al. }, title={Enhancement of the Start-Up Time for Microliter-Scale Microbial Fuel Cells (mu MFCs) via the Surface Modification of Gold Electrodes}, journal={MICROMACHINES}, year=2020}