PUBLICATIONS
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1. Bilal H.M., Yuksel K., Eroglu D., “Influence of Sulfur Loading on Lithium-Sulfur Battery Performance for Different Cathode Carbon Types”, ChemistrySelect, 8(12), e202203944 (2023).
2. Oral B., Tekin B., Eroglu D., Yildirim R., “Performance Analysis of Na-ion Batteries by Machine Learning”, Journal of Power Sources, 549, 232126 (2022).
3. Karaseva E.V., Khramtsova L.A., Lobov A.N., Kuzmina E.V., Eroglu D., Kolosnitsyn V.S., “Features of cycling of lithium-sulfur cells with electrolytes based on sulfolane solutions of LiPF6 and LiBF4”, Journal of Power Sources, 548, 231980 (2022).
4. Kilic A., Yildirim R., Eroglu D., “Assessment of Ionic Liquid Electrolytes for High-Performance Lithium-Sulfur Batteries using Machine Learning”, International Journal of Energy Research (2022).
5. Bilal H.M., Eroglu D., “Carbon-to-Sulfur Ratio in the Cell Controls the Discharge Capacity, Cycling Performance and Energy Density of a Lithium-Sulfur Battery”, International Journal of Energy Research, 46, 15926-15937 (2022).
6. Abdulkadiroglu B., Bektas H., Eroglu D., “How to model the cathode area in lithium-sulfur batteries?”, ChemElectroChem, 9(4), e202101553 (2022).
7. Kilic A., Eroglu D., Yildirim R., “Determining the key performance factors in lithium-oxygen batteries using machine learning”, Journal of The Electrochemical Society, 168, 090544 (2021).
8. Kilic A., Yildirim R., Eroglu D., “Machine learning analysis of Ni/SiC electrodeposition using association rule mining and artificial neural network”, Journal of The Electrochemical Society, 168, 062514 (2021).
9. Kilic A., Eroglu D., “Characterization of the effect of cell design on Li-S battery resistance using electrochemical impedance spectroscopy”, ChemElectroChem, 8, 963-971 (2021).
10. Bilal H.M., Eroglu D., “Assessment of Li-S Battery Performance as a Function of Electrolyte-to-Sulfur Ratio”, Journal of The Electrochemical Society, 168, 030502 (2021).
11. Erisen N., Eroglu D., “Modeling the discharge behavior of a lithium-sulfur battery”, International Journal of Energy Research, 44, 10599-10611 (2020).
12. Kilic A., Odabasi C., Yildirim R., Eroglu D., “Assessment of Critical Materials and Cell Design Factors for High-Performance Lithium-Sulfur Batteries using Machine Learning”, Chemical Engineering Journal, 390, 124117 (2020).
13. Emerce N.B., Eroglu D., "Effect of Electrolyte-to-Sulfur Ratio in the Cell on the Li-S Battery Performance." Journal of The Electrochemical Society, 166(8), A1490-A1500 (2019).
14. Michaelis C., Erisen N., Eroglu D., Koenig Jr G.M., “Electrochemical performance and modeling of lithium‐sulfur batteries with varying carbon to sulfur ratios”, International Journal of Energy Research, 43, 874-883 (2019).
15. Eroglu D., “Ni/TiC nanokompozitlerin bir katyonik dispersant eşliğinde elektrodepozisyon modeli”, Uludağ University Journal of The Faculty of Engineering, 24(1), 367-382 (2019).
16. Erisen N., Emerce N.B., Erensoy S.C., Eroglu D., “Modeling the Effect of Key Cathode Design Parameters on the Electrochemical Performance of a Lithium-Sulfur Battery”, International Journal of Energy Research, 42, 2631-2642 (2018).
17. Acet N., Eroglu D., “Electrodeposition of Ni/TiC Nanocomposites in the Presence of a Cationic Dispersant”, Journal of The Electrochemical Society, 165(2), D31-D36 (2018).
18. Eroglu D., Zavadil K.R., Gallagher K.G., “Critical Link between Materials Chemistry and Cell-Level Design for High Energy Density and Low Cost Lithium-Sulfur Transportation Battery”, Journal of The Electrochemical Society, 162(6), A982-990 (2015).
19. Eroglu D., Ha S., Gallagher K.G., “Fraction of the theoretical specific energy achieved on pack-level for hypothetical battery chemistries”, Journal of Power Sources, 267, 14-19 (2014).
20. Gallagher K.G., Goebel S., Greszler T., Mathias M., Oelerich W., Eroglu D., Srinivasan V., “Quantifying the Promise of Lithium-Air Batteries for Electric Vehicles”, Energy and Environmental Science, 7, 1555-1563 (2014).
21. Vilinska A., Ponnurangam S., Chernyshova I., Somasundaran P., Eroglu D., Martinez J., West A.C., “Stabilization of Silicon Carbide (SiC) micro- and nanoparticle dispersions in the presence of concentrated electrolyte”, Journal of Colloid and Interface Science, 423, 48–53 (2014).
22. Eroglu D., Vilinska A, Somasundaran P., West A.C., "Use of dispersants to enhance incorporation rate of nano-particles into electrodeposited films", Electrochimica Acta, 113, 628-634 (2013).
23. Eroglu D., West A.C., "Mathematical modeling of Ni/SiC co-deposition in the presence of a cationic dispersant", Journal of The Electrochemical Society, 160(9), D354-D360 (2013).
24. Eroglu D., Vilinska A, Somasundaran P., West A.C., "Effect of a cationic polymer, polyethyleneimine, on Ni/SiC co-deposition", Journal of The Electrochemical Society, 160(2), D35-D40 (2013).
25. Eroglu D., West A.C., "Modeling of reaction kinetics and transport in the positive porous electrode in a sodium-iron chloride battery", Journal of Power Sources, 203, 211-221 (2012).
26. Eroglu D., Nur Y., Bayram G., Toppare L.K., "Electrochemical synthesis of poly(methylsilyne) and investigation of the effects of parameters on the synthesis", Journal of Applied Polymer Science, 118(5), 3049-3057 (2010).
27. Eroglu D., Nur Y., Sonmez U., Bayram G., Pitcher M.W., Toppare L.K., "Batteries and a pinch of salt: a simple toolkit for the production of poly(methylsilyne)", Journal of Applied Polymer Science, 112, 3519-3521 (2009).
Conferences
1. Bilal H.M., Yuksel K., Eroglu D., “Effect of Carbon Properties on the Lithium-Sulfur Battery Performance”, MRS Fall 2022 Meeting, Boston, USA (November 2022).
2. Abdulkadiroglu B., Bektas H., Eroglu D., “Modeling the Cathode Area to Predict Lithium-Sulfur Battery Performance as a Function of Materials and Cell Design”, MRS Fall 2022 Meeting, Boston, USA (November 2022).
3. Kilic A., Odabasi C., Yildirim R., Eroglu D., “Determination of Critical Materials and Cell Design Factors for Enhanced Li-S Battery Performance Using Machine Learning”, 240th Electrochemical Society Meeting, online (October 2021).
4. Bilal H.M., Eroglu D., “Impact of Carbon-to-Sulfur and Electrolyte-to-Sulfur Ratios on the Energy Density of Lithium-Sulfur Batteries”, 240th Electrochemical Society Meeting, online (October 2021).
5. Kilic A., Eroglu D., Yildirim R., “Analysis of key materials and cell design parameters for high capacity lithium-oxygen batteries using machine learning”, 5th International Symposium on Materials for Energy Storage and Conversion, online (September 2021).
6. Bilal H.M., Eroglu D., “Analysis of the effect of sulfur loading on the performance of lithium-sulfur batteries”, 5th International Symposium on Materials for Energy Storage and Conversion, online (September 2021).
7. Kilic A., Yildirim R., Eroglu D., “Assessment of Ionic Liquid Electrolytes for High Performance Li-S Batteries Using Machine Learning”, 5th International Symposium on Materials for Energy Storage and Conversion, online (September 2021).
8. Can H.M., Eroglu D., “Characterization of the Impact of Carbon-to-Sulfur Ratio on the Lithium-Sulfur Battery Performance”, 238th Electrochemical Society Meeting (Prime 2020), online (October 2020).
9. Karakus A., Eroglu D., “Characterization of the Effect of Electrolyte-to-Sulfur Ratio on the Lithium-Sulfur Cell Resistance using Electrochemical Impedance Spectroscopy Method”, 236th Electrochemical Society Meeting, Atlanta, USA (October 2019).
10. Bilal H.M., Eroglu D., “Characterization of the Effect of Electrolyte-to-Sulfur Ratio on the Performance of a Lithium-Sulfur Cell”, Electrochemistry Conference 2019, Istanbul, Turkey (October 2019).
11. Karakus A., Eroglu D., “Characterization of the Effect of Carbon to Sulfur Ratio on the Lithium-Sulfur Cell Resistance using Electrochemical Impedance Spectroscopy Method”, Electrochemistry Conference 2019, Istanbul, Turkey (October 2019).
12. Erisen N., Eroglu D., “Modeling Discharge Behavior of the Lithium-Sulfur Battery”, 4th International Symposium on Materials for Energy Storage and Conversion, Muğla, Turkey (September 2019).
13. Karakus A., Eroglu D., “Electrochemical Characterization and Modeling of the Effect of Electrolyte-to-Sulfur Ratio on the Cell Resistance in Li-S Batteries”, 4th International Symposium on Materials for Energy Storage and Conversion, Turkey (September 2019).
14. Emerce N.B., Eroglu D., “Modeling the Effect of Electrolyte-to-Sulfur Ratio in the Cathode on the Systems-Level Performance of a Li-S Battery”, 235th Electrochemical Society Meeting, Dallas, USA (May 2019).
15. Koenig G., Michaelis C., Erisen N., Eroglu D., “Experiment and Modeling of Electrochemical Performance of Lithium-Sulfur Batteries with Varying Carbon to Sulfur Ratios”, 235th Electrochemical Society Meeting, Dallas, USA (May 2019).
16. Emerce N.B., Eroglu D., “Modeling the Effect of Electrolyte-to-Sulfur Ratio in the Cathode on the Cell-Level Energy Density of a Lithium-Sulfur Battery”, 3rd International Symposium on Materials for Energy Storage and Conversion in Belgrade, Serbia (September 2018).
17. Emerce N.B., Kulah G., Eroglu D., “Modeling the effect of electrolyte-to-sulfur ratio in the cathode on the electrochemical performance of a lithium-sulfur battery”, 9th Eastern Mediterranean Chemical Engineering Conference in Ankara, Turkey (September 2018).
18. Erisen N., Kulah G., Eroglu D., “Modeling of reaction mechanisms in lithium-sulfur batteries”, 9th Eastern Mediterranean Chemical Engineering Conference in Ankara, Turkey (September 2018).
19. Erisen N., Emerce N.B., Eroglu D., “Modeling the Effect of Critical Cathode Design Parameters on the Electrochemical Performance of a Li-S Cell”, 2018 Lithium-Sulfur Batteries: Mechanisms, Modeling & Materials in Chicago, USA (April 2018).
20. Erisen N., Emerce N.B., Eroglu D., “Electrochemical Performance Model for the Lithium-Sulfur Battery Based on Cathode Design Parameters”, 2nd International Symposium on Materials for Energy Storage and Conversion in Nevsehir, Turkey (September 2017).
21. Acet N., Eroglu D., “Electrodeposition of Nickel/Titanium Carbide Nanocomposite Coatings”, 231st Electrochemical Society Meeting in New Orleans, USA (May 2017).
22. Erisen N., Eroglu D., “Modeling the Effect of Carbon to Sulfur Ratio in the Cathode on the Electrochemical Performance of a Li-S Cell”, 231st Electrochemical Society Meeting in New Orleans, USA (May 2017).
23. Eroglu D., “Lithium-Sulfur Batteries”, ASPILSAN Battery Technologies Workshop in Kayseri, Turkey (December 2016).
24. Erensoy S.C., Eroglu D., “A Simple, One-Dimensional Electrochemical Model for the Lithium-Sulfur Battery”, 230th Electrochemical Society Meeting in Hawaii, USA (October 2016).
25. Erensoy S.C., Eroglu D., “Electrochemical Modeling of Lithium-Sulfur Batteries”, 12th National Conference of Chemical Engineering in Izmir, Turkey (August 2016).
26. Eroglu D., “Electrodeposition of Ni/SiC Nanocomposites for Wear- and Corrosion-Resistant Coatings”, 1st ASELSAN Materials Science Workshop in Ankara, Turkey (September 2015).
27. Eroglu D., Zavadil K., Gallagher K., “Critical Materials- and Cell-Level Design Considerations for High Energy Density and Low Cost Lithium-Sulfur Battery”, International Symposium on Materials for Energy Storage and Conversion in Ankara, Turkey (September 2015).
28. Eroglu D., Ha S., Gallagher K.G., “Techno-Economic Modeling of Beyond Li-ion Batteries”, Beyond Li Ion VII in Argonne, USA (June 2014).
29. Eroglu D., Ha S., Gallagher K.G., “Pack Level Estimations for Beyond Lithium-ion Chemistries with High Theoretical Specific Energy and Energy Density”, 225th Electrochemical Society Meeting in Orlando, USA (May 2014).
30. Eroglu D., Ha S., Gallagher K.G., “Fraction of the Theoretical Specific Energy Captured on System Level for Hypothetical Beyond Lithium-ion Chemistries”, Gordon Research Conference – Batteries in Ventura, USA (March 2014).
31. Eroglu D., Sun X., Santiago J.M., Ponnurangam S., Chernyshova I., Somasundaran P, West A.C., “Electrochemical Deposition of Nickel/Silicon Carbide Composites for Wear-Resistant Coatings”, 221st Electrochemical Society Meeting in Seattle, USA (May 2012).
32. Eroglu D., Bayram G., “Flammability and thermal properties of polypropylene/silicon-based preceramic polymer composites”, 17th International Conference on Composites/Nano Engineering in Hawaii, USA (August 2009).
33. Eroglu D., Bayram G., Pitcher M.W., “Electrochemical synthesis of poly(methylsilyne)”, 8th National Conference of Chemical Engineering in Malatya, Turkey (August 2008).

