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Name: |
Sevki Can |
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Surname: |
Cevher |
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Institution: |
Sivas University of Science and Technology |
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Type of Institution: |
University |
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ORCID number: |
https://orcid.org/0000-0003-2087-2802
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Google Scholar: |
https://scholar.google.com/citations?user=6LFuhk4AAAAJ&hl=tr
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Research Gate: |
https://www.researchgate.net/profile/Sevki-Cevher
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Country: |
Turkey
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WEB address: |
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Working groups of interest |
- | WG1 - Advances in Porous Materials and Technologies | - | WG2 - Health | - | WG3 - Energy | - | WG4 - Environment |
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Research field (Free keywords) |
Electrochemistry, biosensors, conjugated polymers, electrochromics, solar cells, light emitting diodes, |
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Scientific expertise |
As being synthetic organic chemist, I can design and synthesize functional conjugated polymers for a specified organic electronic applications such as electrochromics, organic light emitting diodes (OLEDs) organic solar cells (OSCs) , biosensors, etc. Modarate hands on experience to construct those devices. |
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Capabilities |
For this cost action, I can design and synthesize porous conjugated and semi-conjugated networks/ metal organic frameworks. Using my collaborators, organic electronic devices of those organic/ organo metalic materials can be constructed. For example I can synthesize n-type/p-type porous organic networks and with this material OFET devices can be constructed and performances of those structures can be investigated. Same is valid for OLEDs and OSCs in WG3 Energy. I can synthesze functional porous organic/organometalic (maybe rare earth metallic) networks that can be used to construct biosensors fo such applications; pesticide/insecticide detection in food/ beverages, cathecol detection in waste water, maybe a gas sensors (WG2 & WG4). Although there is no previous synthetic approach for porous networks in my background but I can capable of doing such network synthesis. |
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Relevant publications (3 max.) |
Indenoquinoxalinone based conjugated polymer substrate for laccase biosensor, doi:10.1016/j.matchemphys.2020.123788 |
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A comprehensive study: Theoretical and experimental investigation of heteroatom and substituent effects on frontier orbitals and polymer solar cell performances10.1002/pol.20200513 |
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Alkyl-End Phenanthroimidazole Modification Of Benzotriazole Based Conjugated Polymers For Optoelectronic Applications, 10.1016/j.synthmet.2018.06.007 |
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Projects (2 max.) |
The Effect of Doping Gold Nanoparticles on Polymer Backbone for Power Conversion Efficiencies of Organic Photovoltaics |
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Synthesis and Characterization of Rare Earth-Containing Organometallic Small Molecules for White Light Emitting Diode Applications |
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