تجاوز إلى المحتوى الرئيسي
User Image

Dr Ammar TIGHEZZA

Associate Professor

Faculty

كلية العلوم
2 A 146 Building 5
المنشورات
مقال فى مجلة
2025

Investigations of ternary Cu-Mn-Zn oxide nanocomposites as potential electrode for hybrid supercapacitors by one-pot hydrothermal method

Journal of Energy Storage

Ternary metal oxide nanocomposites (NCs) electrodes are promising active material in supercapacitors (SCs) applications, owing to their exceptional electrochemical performances with numerous oxidation states. In this present work, ternary Cu-Mn-Zn Oxide NCs are successfully synthesized through simple one-pot hydrothermal method. The structure, chemical bonds, morphology, elemental compositions, and binding energy values of prepared Cu-Mn-Zn Oxide ternary NCs are analyzed through XRD, FTIR, FESEM, EDX, HRTEM, and XPS techniques. Also, the electrochemical activities of fabricated electrodes are studied by cyclic voltammetry (CV), electrochemical impedance spectroscopy (EIS), and galvanostatic charge-discharge (GCD) analysis. As a result, the Cu-Mn-Zn Oxide ternary NCs exhibits maximum specific capacitance (Csp1) of 806.83 F/g at 10 mV/s scan rate, which is higher than the binary CuMn2O4 (205.00 F/g) and ZnMn2O4 (346.00 F/g) electrode materials. In addition, the ternary NCs electrode provides 217.10 F/g, 675.75 F/g, and 892.85 F/g of outer (Q* outer), inner (Q* inner), and total (Q* total) capacitances from Trasatti analysis. Furthermore, the Cu-Mn-Zn Oxide//AC hybrid (HSC) supercapacitor device has been fabricated, which delivers good specific capacitance (Csp4) of 188.57 F/g at 2 A/g current density, and high energy density (EHSC) of 44.26 Wh/kg at the corresponding power density (PHSC) of 1299.99 W/kg. Additionally, the constructed HSC device manifests 86.65 % of capacitive retention and 111.13 % of coulombic efficiency after 3000 cycles. This result implies that the ternary Cu-Mn-Zn Oxide NCs has been employed as an effective active electrode material for futuristic energy storage technologies

اسم الناشر
Elsevier
رقم المجلد
109
الصفحات
115184
مزيد من المنشورات
publications

The focus in recent years has been on developing innovative, green technologies for energy production and storage. Nanocomposite materials are attractive due to their exceptional performance,…

بواسطة Tayaba Tahsen, Ravia Irshad, Ayesha Hareem, Irsa Kanwal, Talib K. Ibrahim, Khalid Mehmood, Ammar M. Tighezza, Shahid Hussain
2025
publications

With the rapid development of biomedical technology, biodegradable and implantable energy storage devices for …

بواسطة Xiaofeng Zhang a , Muhammad Sufyan Javed, Hongjia Ren, Xinze Zhang, Salamat Ali, Kaiming Han , Awais Ahmad, Ammar M. Tighezza, Weihua Han, Kui-Qing Peng
2024
publications

Electrochemical energy storage devices are vital for renewable energy integration and the deployment of electric vehicles. Ongoing research seeks to create new materials with innovative…

بواسطة Dhananjaya Merum, Rosaiah Pitcheri, Nipa Roy, Naveen Kumar Kilari, Ammar Mohamed Tighezza, Soumyendu Roy, Sang Woo Joo
2024
تم النشر فى:
Wiley