scholarly journals Hybrid Supercapacitor Electrode Materials via Molecular Imprinting of Nitrogenous Ligands and Iron Complexes into Carbon Support

Author(s):  
Holly M Fruehwald, ◽  
Peter D Melino ◽  
Olena V Zenkina ◽  
E. Bradley Easton

Abstract Novel hybrid supercapacitor materials were made by the covalent immobilization of nitrogenous ligands onto the surface of commercial carbon support (Vulcan XC-72), then coordinated to iron. The covalent attachment of the nitrogenous ligands allows for the controlled deposition of nitrogen functionalities on the surface of the carbon. The supercapacitor tests in acidic media showed significant growth of the capacitance as a result of the nitrogenous ligands on the support. Notably, the increase of the capacitance values directly correlates with the molecular loading on the surface. Following coordination of the iron to the ligands on the surface further elevated the capacitance via Faradaic reactions of the metal center. Remarkably, the overall capacitance of materials significantly increased after the course of long-term cycling tests (ca. 110% or higher). At the beginning of durability studies, a small decline in capacitance was observed, due to some extent of molecular decomposition on the surface of the electrode. However, the intense cycling further propagates a steady growth of the overall capacitance. This could be attributed to the process of polymerization of physisorbed molecules/ radicals that result in the formation of a 3D network structure that eventually boosts the overall capacitance and charge storage of the electrode.

RSC Advances ◽  
2017 ◽  
Vol 7 (12) ◽  
pp. 6856-6864 ◽  
Author(s):  
Kien-Cuong Pham ◽  
David S. McPhail ◽  
Andrew T. S. Wee ◽  
Daniel H. C. Chua

Deposition of amorphous molybdenum sulfide on a high specific surface area carbon support strongly enhanced the specific capacitance of the material.


2020 ◽  
Vol 8 (21) ◽  
pp. 10534-10570 ◽  
Author(s):  
Josué M. Gonçalves ◽  
Matheus I. da Silva ◽  
Henrique E. Toma ◽  
Lucio Angnes ◽  
Paulo R. Martins ◽  
...  

The main strategies to impart synergistic catalytic effects to trimetallic oxide/layered double hydroxide materials are discussed: (a) heteroatom incorporation, (b) the formation of nanocomposites, and (c) hierarchical core@shell nanostructuration.


2018 ◽  
Vol 6 (19) ◽  
pp. 9153-9160 ◽  
Author(s):  
Yaping Wang ◽  
Anqiang Pan ◽  
Yifang Zhang ◽  
Junrong Shi ◽  
Jiande Lin ◽  
...  

Heterogeneous NiS/NiO multi-shelled hollow microspheres exhibit excellent electrochemical performances as hybrid supercapacitor electrode materials.


2021 ◽  
Author(s):  
Darpan Vijaykumar Bhuse ◽  
Vijaykumar M Bhuse ◽  
Ramdas G Atram ◽  
Rounak R Atram ◽  
Subhash B Kondawar

Abstract A green and sustainable approach to recycle the waste iron rust into a valuable α modification of Fe2O3 via simple grinding and calcination for application in hybrid supercapacitor is reported. The α-Fe2O3 was coupled with conducting polymer carbon nanofibers (CNF) and Poly aniline (PANI) to form composite hybrid supercapacitor electrode materials. The conventional hydrothermal, electro-spinning processes were used to prepare composites. X-ray diffraction, Transmission Electron Microscopy (TEM), High Resolution Transmission Electron Microscopy (HRTEM), Selected Area Electron Diffraction (SAED), Scanning Electron Microscopy and Energy Dispersive X-Ray spectroscopy were used to study the structural, morphological and compositional properties of as synthesised α-Fe2O3 and its composites with CNF and PANI. The α-Fe2O3/CNF and α-Fe2O3/PANI composites coated on carbon rod were used as electrodes in a three-electrode system to study Electrochemical Impedance Spectroscopy, Cyclic Voltammetry and Galvanostatic Charge-Discharge in 1M H2SO4. It is observed that α-Fe2O3/PANI exhibit higher response as against α-Fe2O3/CNF with respect to specific capacitance; 192.29 Fg-1 (88.88 Fg-1), energy density; 11.28 WhKg-1 (3.084 WhKg-1) power density; 162.44Wkg-1 (69.39 Wkg-1) with capacitance retention of 80% (75%). The heavy dispersion of α-Fe2O3 over long CNF and PANI fibres with intimate contact resulted in abundant active sites for electrochemical reactions leading to obtained result. The rust derived α-Fe2O3 with PANI offer excellent stability to act as potential candidate for sustainable hybrid supercapacitor application.


Author(s):  
Rui Ma ◽  
Zetong Chen ◽  
Danna Zhao ◽  
Xujing Zhang ◽  
Jingting Zhuo ◽  
...  

To promote the development of supercapacitors and their applications in modern electronics, it is crucial to explore novel supercapacitor electrode materials. As a representative member of the rising 2D MXenes,...


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