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| === Comprehensive Performance Optimization=== | | === Comprehensive Performance Optimization=== |
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| + | {| style="border:2px solid #abd5f5; background:#f1f5fc;" |
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| + | |- valign=top |
| + | | width="100" |'''title''': |
| + | | width="550"|[[Media:Morgul_EtAl_Circuit_Design_Steps_for_Nano_Crossbar_Arrays.pdf | Circuit Design Steps for Nano-Crossbar Arrays: Area-Delay-Power Optimization with Fault Tolerance]] |
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| + | | '''authors''': |
| + | | width="550"| Ceylan Morgul, Luca Frontini, Onur Tunali, Lorena Anghel, Valentina Ciriani, Ioana Vatajelu, Csaba Moritz, Mircea Stan, Dan Alexandrescu, and [[Mustafa Altun]] |
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| + | | '''appeared in''': |
| + | | width="624" | [http://ieeexplore.ieee.org/xpl/RecentIssue.jsp?punumber=7729 IEEE Transactions on Nanotechnology], early access, 2020. |
| + | |} |
| + | | align=center width="70" | |
| + | <span class="plainlinks"> |
| + | [[File:PDF.png|65px|link=http://www.ecc.itu.edu.tr/images/d/db/Morgul_EtAl_Circuit_Design_Steps_for_Nano_Crossbar_Arrays.pdf]]</span> |
| + | <br> |
| + | [[Media:Morgul_EtAl_Circuit_Design_Steps_for_Nano_Crossbar_Arrays.pdf | Paper]] |
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| + | |} |
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| {| style="border:2px solid #abd5f5; background:#f1f5fc;" | | {| style="border:2px solid #abd5f5; background:#f1f5fc;" |
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| === Transistor Fabrication === | | === Transistor Fabrication === |
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| + | | width="100" |'''title''': |
| + | | width="624"|[[Media:Ordokhani_EtAl_SWCNT_Fabrication_with_Sonication.pdf| Improving Threshold Voltage and ON/OFF Current Ratio of Single-Walled Carbon Nanotube Field-Effect Transistor by Post-Sonication Treatments |
| + | ]] |
| + | |- valign="top" |
| + | | '''authors''': |
| + | | Fereshteh Ordokhani, Beyza Yedikardes, Ece Kurt, Nihat Akkan, Nilgün Yavuz, Esra Zayim, and [[Mustafa Altun]] |
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| + | | '''appeared in''': |
| + | | [http://www.journals.elsevier.com/thin-solid-films Thin Solid Films], early access, 2021. |
| + | |} |
| + | | align=center width="70" | |
| + | <span class="plainlinks"> |
| + | [[File:PDF.png|65px|link=http://www.ecc.itu.edu.tr/images/5/5e/Ordokhani_EtAl_SWCNT_Fabrication_with_Sonication.pdf]]</span> |
| + | <br> |
| + | [[Media:Ordokhani_EtAl_SWCNT_Fabrication_with_Sonication.pdf | Paper]] |
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| + | |} |
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| {| style="border:2px solid #abd5f5; background:#f1f5fc;" | | {| style="border:2px solid #abd5f5; background:#f1f5fc;" |
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| |- valign=top | | |- valign=top |
| | width="100" |'''title''': | | | width="100" |'''title''': |
− | | width="550"|[[Media:Yedikardes_EtAl_P3HT_WO3_Organic_Transistors.pdf | The Enhanced Electronic Properties of P3HT-WO3 Hybrid Thin Film Transistors]] | + | | width="550"|[[Media:Yedikardes_EtAl_P3HT_WO3_Organic_Transistors.pdf | Enhanced Electrical Properties of P3HT:WO3 Hybrid Thin Film Transistors]] |
| |- valign="top" | | |- valign="top" |
| | '''authors''': | | | '''authors''': |
| | width="550"|Beyza Yedikardes, Fereshteh Ordokhani, Nihat Akkan, Ece Kurt, Esra Zayim, Nilgün Yavuz, and [[Mustafa Altun]] | | | width="550"|Beyza Yedikardes, Fereshteh Ordokhani, Nihat Akkan, Ece Kurt, Esra Zayim, Nilgün Yavuz, and [[Mustafa Altun]] |
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| + | | '''appeared in''': |
| + | | width="550"| [http://www.springer.com/journal/11664 Journal of Electronic Materials], Vol. 50, Issue 4, pp. 2466–2475, 2021. |
| |- valign=top | | |- valign=top |
| | '''presented at''': | | | '''presented at''': |
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| [[File:PDF.png|65px|link=http://www.ecc.itu.edu.tr/images/d/d5/Yedikardes_EtAl_P3HT_WO3_Organic_Transistors.pdf]]</span> | | [[File:PDF.png|65px|link=http://www.ecc.itu.edu.tr/images/d/d5/Yedikardes_EtAl_P3HT_WO3_Organic_Transistors.pdf]]</span> |
| <br> | | <br> |
− | [[Media:Yedikardes_EtAl_P3HT_WO3_Organic_Transistors.pdf | Abstract]] | + | [[Media:Yedikardes_EtAl_P3HT_WO3_Organic_Transistors.pdf | Paper]] |
| | align="center" width="70" | | | | align="center" width="70" | |
| <span class="plainlinks"> | | <span class="plainlinks"> |