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The MOF-originated NiCu-POx/NGQD for efficient supercapattery devices and hydrogen evolution reaction.

Authors :
ul Hassan, Haseeb
Iqbal, Muhammad Waqas
Wabaidur, Saikh Mohammad
Afzal, Amir Muhammad
Habila, Mohamed A.
Elahi, Ehsan
Source :
International Journal of Hydrogen Energy. Sep2023, Vol. 48 Issue 81, p31531-31549. 19p.
Publication Year :
2023

Abstract

Due to the high viability of electrochemical energy resources and their storage techniques in the present climate, supercapacitors and water-splitting electrolysis have seen dramatically increased attention in modern days. We presented the synthesis of nickel-copper phosphate (NiCu-PO x) nanosheets from the phosphorization of the nickel-copper metal-organic framework (NiCu-MOF) at a limited temperature. Further, the addition of nitrogen-doped graphene quantum dots (NGQD) in the Ni–Cu-PO x was also studied. SEM, XRD, and XPS were used to analyze the structural and elemental composition of the synthesized materials. Further, Brunauer-Emmett-Teller (BET) measurements showed an enhancement in surface area when NGQDs were introduced into the heterostructure of NiCu-PO x. An extraordinary value of specific capacity (1431 C -g−1 at 1.4 Ag-1) was achieved with NiCu-PO x /NGQDs. Supercapattery device (NiCu-PO x /NGQDs//PANI@AC) was fabricated with polyaniline doped activated carbon as the negative and NiCu-PO x /NGQDs as the positive electrode. The specific capacity of the real device (NiCu-PO x /NGQDs//PANI@AC) was 224 C -g−1 at 2.0 Ag-1. The energy density for this asymmetric device (NiCu-PO x /NGQDs//PANI@AC) was 73 Whkg−1 at 980 Wkg-1 power density. The device (NiCu-PO x /NGQDs//PANI@AC) was subjected to 10,000 charge-discharge cycles to test its durability. After 10,000 cycles NiCu-PO x /NGQDs//PANI@AC demonstrates an outstanding 86% reservation of capacity. The NiCu-POx/NGQDs showed a small overpotential of 138 mV during the 24 h HER test. According to our findings, NiCu-PO x /NGQDs proved to be a suitable electrode material for prospective supercapattery and HER applications. • The hydrothermal method was used to synthesize the Ni–Cu-MOF, Ni–Cu-PO x , and Ni–Cu-PO x /NGQD electrode material. • An extraordinary specific capacity of 1431 C -g−1 at 1.4 A g-1 current density was obtained. • The energy density calculated was found to be 73 Whkg−1. • The specific capacity of the real device was found to be 224 Cg-1. • It was observed that the 86% capacity was preserved after 10,000 cycles. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03603199
Volume :
48
Issue :
81
Database :
Academic Search Index
Journal :
International Journal of Hydrogen Energy
Publication Type :
Academic Journal
Accession number :
171367320
Full Text :
https://doi.org/10.1016/j.ijhydene.2023.04.303