4.5 Article

Fabrication of mesoporous iron (Fe) doped copper sulfide (CuS) nanocomposite in the presence of a cationic surfactant via mild hydrothermal method for supercapacitors

Journal

MATERIALS RESEARCH EXPRESS
Volume 5, Issue 2, Pages -

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/2053-1591/aaad55

Keywords

copper sulfide; nanocomposites; mesoporous; hydrothermal; CTAB

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We report fabrication of mesoporous Fe doped CuS nanocomposites with uniform mesoporous spherical structures via a mild hydrothermal method employing copper nitrate trihydrate (Cu (NO3).3H(2)O), Thiourea (Tu,Sc(NH2)(2) and Iron tri nitrate (Fe(No-3)(3)) as initial materials with cationic surfactant cetyltrimethylamoniame bromide (CTAB) as stabilizer/ size controller and Ethylene glycol as solvent at 130 degrees C temperature. The products were characterized by XRD, SEM/ EDX, TEM, FTIR andUVanalysis. X-ray diffraction (XRD) spectra confirmed the Fe doped CuS nanocomposites which are crystalline in nature. EDXandXRDpattern confirmed that the product is hexagonal CuS phase. Fe doped spherical structure of CuS with grain size of 21 nmwas confirmed byXRDpattern. Fe doping was identified by energy dispersive spectrometry (EDS). The Fourier- transform infrared (FTIR) spectroscopy results revealed the occurrence of active functional groups required for the reduction of copper ions. Studies showed that after a definite time relining on the chosen copper source, the obtained Fe- CuS nanocomposite shows a tendency towards self- assembly and creating mesoporous like nano and submicro structures byTEM/ SAED. The achievable mechanism of producing this nanocomposite was primarily discussed. The electrochemical study confirms the pseudocapacitive nature of the CuS and Fe- CuS electrodes. The CuS and Fe-CuS electrode shows a specific capacitance of about 328.26 and 516.39 Fg(-1) at a scan rate of 5 mVs(-1). As the electrode in a supercapacitor, the mesoporous nanostructured Fe-CuS shows excellent capacitance characteristics.

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