Abdulmajid A. Mirghni, Abubakar Dahiru Shuaibu, Fatima Al Qwairi, Syed Shaheen Shah, Abdul-Rahman Faisal Al-Betar, M. Nasiruzzaman Shaikh, Md. Abdul Aziz
Polyaniline (PANI) is commonly used as an electrode material for supercapacitors; nevertheless, it has limited conductivity, leading to significant IR drops during charging and discharging. To enhance its performance, PANI was integrated with iron (Fe), a non-toxic and abundant element, creating a composite electrode. The electrochemical performance of the PANI/Fe composite, produced via direct electrodeposition, was compared to pure PANI in a 3-electrode system with 1 M H₂SO₄ electrolyte at 0.7 V vs Ag/AgCl. The PANI/Fe composite exhibited significantly reduced IR drops, suggesting improved conductivity due to the interaction between PANI and Fe cations. It achieved a specific capacitance of 278.7 F g −1 , double that of pure PANI (137.7 F g −1 ). A hybrid supercapacitor, with PANI/Fe positive electrode and jute-stick activated carbon (JAC) negative electrode, was also tested. This device delivered a specific power of 479.5 W kg −1 , specific energy of 62.9 Wh kg −1 , and specific capacity of 131.2 mAh g −1 at 1 A g −1 , with a cell potential of 1.2 V. After 4000 cycles at 10 A g −1 , it retained 97% of its capacity, with peak values of 6600 W kg −1 power and 26.6 Wh kg −1 energy. These results demonstrate the potential of Fe-enhanced PANI for improved supercapacitor performance.