Facile synthesis of novel PANI covered Y2O3-ZnO nanocomposite: A promising electrode material for supercapacitor

被引:26
作者
Rehman, Muhammad Naveed ur [1 ]
Munawar, Tauseef [1 ]
Nadeem, Muhammad Shahid [1 ]
Mukhtar, Faisal [1 ]
Akbar, Usman Ali [2 ]
Manzoor, Sumaira [3 ]
Hakeem, Abbas Saeed [4 ]
Ashiq, Muhammad Naeem [3 ]
Iqbal, Faisal [1 ]
机构
[1] Islamia Univ Bahawalpur, Inst Phys, Bahawalpur 63100, Pakistan
[2] King Fahd Univ Petr & Minerals, Dept Mech Engn, Dhahran 31261, Saudi Arabia
[3] Bahauddin Zakariya Univ, Inst Chem Sci, Multan 60800, Pakistan
[4] King Fahd Univ Petr & Minerals, Interdisciplinary Res Ctr Hydrogen & Energy Storag, Dhahran 31261, Saudi Arabia
关键词
PANI-Y2O3; -ZnO; Electrochemical measurements; Structural analysis; Supercapacitor; Nanocomposite; HIGH-PERFORMANCE; OXIDE; CARBON; STATE; NANOPARTICLES; NANOWIRES; DENSITY; ZNO;
D O I
10.1016/j.solidstatesciences.2022.106883
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
In the present study, pristine ZnO, Y2O3, binary PANI-Y2O3, PANI-ZnO, Y2O3-ZnO, and novel ternary PANI-Y2O3-ZnO nanocomposites were prepared via co-precipitation and ultra-sonication techniques. The XRD pattern evident the formation of pristine oxides and binary/ternary nanocomposites. FTIR analysis showed the benze-noid ring stretching, C-H, and C-N in-plane/out-of-plane vibrations due to PANI and metal-oxygen bonds vibrations, which confirmed nanocomposite formation with PANI. FE-SEM images revealed that PANI covered on Y2O3-ZnO nanocomposite and EDX exhibited the existence of zinc and yttrium in synthesized products. The DC conductivity of ternary nanocomposites is higher than others. The Cyclic Voltammetry (CV) exhibited that PANI-Y2O3-ZnO nanocomposite has greater specific capacitance (C-sp) 412 Fg(-1) at the scan rate of 10 mVs(-1). The Galvanostatic Charge-Discharge (GCD) also evident the maximum specific capacitance 873 Fg(-1) of ternary nanocomposite at an applied current density of 3 A/g with increased energy density 73 Wh/kg and power density 9.1 kW/kg. Electrochemical Impedance Spectroscopy (EIS) showed that PANI-Y2O3-ZnO nanocomposite has the lowest value of polarization (R-p) resistance and solution (R-s) resistance. The highest value of specific capacitance of novel ternary nanocomposite is due to the rapid charge transfer rate and the enhanced surface-dependent electrochemical properties by PANI. Furthermore, the present findings introduce a novel electrode material for high-performance supercapacitor application.
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页数:12
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