Flexible Silver Nanowire Networks for High Frequency Shielding

2016-12-02
Alpugan, Ece
Coşkun, Şahin
Dericioğlu, Arcan Fehmi
Ünalan, Hüsnü Emrah

Suggestions

Flexible supercapacitor electrodes with silver nanowire networks
Ünalan, Hüsnü Emrah; Coşkun, Şahin (null; 2018-11-25)
Silver nanowires (Ag NWs) are appealing candidates for supercapacitor electrodes due to their high conductivity in addition to their allowance for all active materials to be in close contact to facilitate charge transport. All are very important to attain maximum charge accumulation provided that Ag NWs are electrochemically stable within the utilized potential window. In this work, high aspect ratio Ag NWs are used within a coaxial and/or network-like flexible nanocomposite structure in supercapacitor elec...
Flexible supercapacitor electrodes with silver nanowire networks
Ünalan, Hüsnü Emrah (null; 2019-09-11)
Flexible Multilayer Graphene Hall Sensors on Ultra-Thin PVC Foil
Oral, Ahmet (2017-07-11)
Flexible supercapacitor electrodes with vertically aligned carbon nanotubes grown on aluminum foils
Dogru, Itir Bakis; Durukan, Mete Batuhan; Turel, Onur; Ünalan, Hüsnü Emrah (2016-06-01)
In this work, vertically aligned carbon nanotubes (VACNTs) grown on aluminum foils were used as flexible supercapacitor electrodes. Aluminum foils were used as readily available, cheap and conductive substrates, and VACNTs were grown directly on these foils through chemical vapor deposition (CVD) method. Solution based ultrasonic spray pyrolysis (USP) method was used for the deposition of the CNT catalyst. Direct growth of VACNTs on aluminum foils ruled out both the internal resistance of the supercapacitor...
Flexible waveguides with amorphous photonic materials
Sarihan, Murat Can; Yilmaz, Yildirim Batuhan; Erdil, Mertcan; Aras, Mehmet Sirin; Yanik, Cenk; Wong, Chee Wei; Kocaman, Serdar (2019-01-01)
Amorphous photonic materials offer an alternative to photonic crystals as a building block for photonic integrated circuits due to their shared short-range order. By using the inherent disorder of amorphous photonic materials, it is possible to design flexible-shaped waveguides that are free from restrictions of photonic crystals at various symmetry axes. Effects of disorder on photonic crystal waveguide boundaries have examined before, and it is shown that flexible waveguides with high transmission are pos...
Citation Formats
E. Alpugan, Ş. Coşkun, A. F. Dericioğlu, and H. E. Ünalan, “Flexible Silver Nanowire Networks for High Frequency Shielding,” 2016, Accessed: 00, 2021. [Online]. Available: https://hdl.handle.net/11511/80816.