Cobalt Silicate: Critical Synthetic Condition Affect Its Electrochemical Properties for Energy Storage and Conversion

2022 ◽  
Author(s):  
Tao Hu ◽  
Yang Wang ◽  
Xueying Dong ◽  
Yang Mu ◽  
Xiaoyu Pei ◽  
...  

Cobalt silicate (CoSi) is a promising electrode material for supercapacitors (SCs) and electrocatalytic material for oxygen removal reaction (OER). How to synthesize cobalt silicate with excellent energy storage and OER...

2020 ◽  
Vol 4 (3) ◽  
pp. 1242-1253 ◽  
Author(s):  
Namachivayam Karthik ◽  
Tian Tian ◽  
Thomas Nesakumar Jebakumar Immanuel Edison ◽  
Raji Atchudan ◽  
Yong Rok Lee ◽  
...  

A robust pulsed laser rusted stainless steel with superhydrophilic honey-comb texture facilitates conventional areal capacitance and low Tafel slope to handle multifunctional challenges in the fields of energy storage and conversion.


2019 ◽  
Vol 272 ◽  
pp. 01005
Author(s):  
Xiao Fan ◽  
Xuyuan Chen

In this report, NFL-ZnWO4 was synthesized by a hydrothermal route and investigated for application in supercapacitors for the first time. The physical and chemical characterizations of the prepared nanomaterial were analyzed by SEM, EDS, XRD and XPS, respectively. Supercapacitors study of CV, GCD and EIS revealed that NFL-ZnWO4 exhibits good electrochemical properties. The high specific capacitance value of 107.7 F g-1 was achieved at 5 mV s−1. These findings demonstrated that ZnWO4 could be a promising electrode material candidate and highly desirable for application of high property supercapacitors in the future.


RSC Advances ◽  
2020 ◽  
Vol 10 (30) ◽  
pp. 17497-17505
Author(s):  
Xuexia Liu ◽  
Ying Wu ◽  
Huiwen Wang ◽  
Yinfeng Wang ◽  
Chunfang Huang ◽  
...  

MoO3 has gained a great deal of attention as a promising electrode material in energy storage devices.


2021 ◽  
Vol 16 ◽  
Author(s):  
Joice Sophia Ponraj ◽  
Muniraj Vignesh Narayanan ◽  
Ranjith Kumar Dharman ◽  
Valanarasu Santiyagu ◽  
Ramalingam Gopal ◽  
...  

: Increasing energy crisis across the globe requires immediate solutions. Two-dimensional (2D) materials are in great significance because of its application in energy storage and conversion devices but the production process significantly impacts the environment thereby posing a severe problem in the field of pollution control. Green synthesis method provides an eminent way of reduction in pollutants. This article reviews the importance of green synthesis in the energy application sector. The focus of 2D materials like graphene, MoS2, VS2 in energy storage and conversion devices are emphasized based on supporting recent reports. The emerging Li-ion batteries are widely reviewed along with their promising alternatives like Zn, Na, Mg batteries and are featured in detail. The impact of green methods in the energy application field are outlined. Moreover, future outlook in the energy sector is envisioned by proposing an increase in 2D elemental materials research.


Author(s):  
Rouwei Yan ◽  
Biao Xu ◽  
K. P. Annamalai ◽  
Tianlu Chen ◽  
Zhiming Nie ◽  
...  

Background : Renewable energies are in great demand because of the shortage of traditional fossil energy and the associated environmental problems. Ni and Se-based materials are recently studied for energy storage and conversion owing to their reasonable conductivities and enriched redox activities as well as abundance. However, their electrochemical performance is still unsatisfactory for practical applications. Objective: To enhance the capacitance storage of Ni-Se materials via modification of their physiochemical properties with Fe. Methods: A two-step method was carried out to prepare FeNi-Se loaded reduced graphene oxide (FeNi-Se/rGO). In the first step, metal salts and graphene oxide (GO) were mixed under basic condition and autoclaved to obtain hydroxide intermediates. As a second step, selenization process was carried out to acquire FeNi-Se/rGO composites. Results: X-ray diffraction measurements (XRD), nitrogen adsorption at 77K, scanning electron microscopy (SEM) and transmission electron microscopy (TEM) were carried out to study the structures, porosities and the morphologies of the composites. Electrochemical measurements revealed that FeNi-Se/rGO notably enhanced capacitance than the NiSe/G composite. This enhanced performance was mainly attributed to the positive synergistic effects of Fe and Ni in the composites, which not only had influence on the conductivity of the composite but also enhanced redox reactions at different current densities. Conclusion: NiFe-Se/rGO nanocomposites were synthesized in a facile way. The samples were characterized physicochemically and electrochemically. NiFeSe/rGO giving much higher capacitance storage than the NiSe/rGO explained that the nanocomposites could be an electrode material for energy storage device applications.


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