Altun, Sait and Aleinawi, Mohamad and Biçer, Hülya and Bakan Mısırlıoğlu, Feray and Tuncer, Mustafa and Erdem, Emre and Göçmez, Hasan (2025) Structural characterization and electrochemical performance of titanium diboride (TiB2) powders synthesized by citrate gel method. ChemNanoMat . ISSN 2199-692X Published Online First https://dx.doi.org/10.1002/cnma.202500256
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Official URL: https://dx.doi.org/10.1002/cnma.202500256
Abstract
This study reports synthesis of titanium boride (TiB2) powders and their structural characterization and electrochemical performance for a potential electrode material for supercapacitors, employing the citrate gel method within a cost-effective solution-based process. Boric acid, titanium isopropoxide, and citric acid are utilized as precursors for the synthesis route. Preceramic powders obtained from the solution undergo heat treatment at 1400 and 1500 °C in an argon atmosphere. The synthesized powder is subjected to structural and morphological characterization through X-ray diffraction, field emission scanning electron microscopy, energy-dispersive X-ray spectroscopy, differential thermal analysis-thermogravimetry, fourier-transform infrared spectroscopy, and raman spectroscopy measurements. Phase analysis reveals the formation of TiB2. Scanning electron microscopy and transmission electron microscopy images clearly show that TiB2 is obtained as a well-defined hexagonal plate-shaped morphology having side lengths of 300–700 nm and thicknesses of ≈12 nm. TiB2 is used as electrode material in both symmetric and asymmetric devices. For asymmetric configuration, graphite, active carbon, and multilayer carbon nanotube powders are used as the counter electrode. Cyclic voltammetry, potentiostatic electrochemical impedance spectroscopy, and galvanostatic cycling with potential limitation are performed using the multichannel potentiostat. TiB2 delivers an energy density of 0.0028 Wh kg−1 at a power density of 113.3 W kg−1.
Item Type: | Article |
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Uncontrolled Keywords: | citrate gel method; electrode material; supercapacitor; TiB2 |
Divisions: | Faculty of Engineering and Natural Sciences > Academic programs > Materials Science & Eng. Faculty of Engineering and Natural Sciences Sabancı University Nanotechnology Research and Application Center |
Depositing User: | Emre Erdem |
Date Deposited: | 03 Sep 2025 10:38 |
Last Modified: | 03 Sep 2025 10:38 |
URI: | https://research.sabanciuniv.edu/id/eprint/52110 |