Comprehensive Insight into the Mechanism, Material Selection and Performance Evaluation of Supercapatteries

被引:0
作者
Saravanakumar Balasubramaniam
Ankita Mohanty
Suresh Kannan Balasingam
Sang Jae Kim
Ananthakumar Ramadoss
机构
[1] Central Institute of Plastics Engineering and Technology,School for Advanced Research in Polymers, Laboratory for Advanced Research in Polymeric Materials
[2] Norwegian University of Science and Technology (NTNU),Department of Materials Science and Engineering, Faculty of Natural Sciences
[3] Jeju National University,Nanomaterials and Systems Laboratory, Major of Mechatronics Engineering, Faculty of Applied Energy System
来源
Nano-Micro Letters | 2020年 / 12卷
关键词
Supercapattery; Energy density; Power density; Redox materials; Carbon materials;
D O I
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中图分类号
学科分类号
摘要
This article reviewed the recent progress on material challenges, charge storage mechanism, and electrochemical performance evaluation of supercapatteries.Supercapatteries bridge the gap between supercapacitors (low energy density) and batteries (low power density).The importance of the design and configuration of the supercapatteries are briefly reviewed and the future direction in this field also outlined at the end.
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  • [1] Quartey G(2014)Generation of electrical power by a wind turbine for charging moving electric cars J. Energy Technol. Policy 4 19-54
  • [2] Adzimah SK(2017)Electrical energy harvesting from thermal energy with converged infrared light IOP Conf. Ser. Mater. Sci. Eng. 210 012039-151
  • [3] Goh SY(2018)Integrating solar photovoltaic energy conversion systems into industrial and commercial electrical energy utilization—a survey J. Ind. Inf. Integr. 10 39-245
  • [4] Kok SL(2019)The design of a direct charge nuclear battery with high energy conversion efficiency Appl. Radiat. Isot. 148 147-53
  • [5] Padmanathan K(2016)CoAl/PAN interconnected carbon nanofibers with excellent energy storage performance and electrical conductivity Electrochim. Acta 194 239-156
  • [6] Govindarajan U(2018)Biomass gasification coupled to an EFGT–ORC combined system to maximize the electrical energy generation: a case applied to the olive oil industry Energy 144 41-303
  • [7] Ramachandaramurthy VK(2020)The role of electricity consumption, globalization and economic growth in carbon dioxide emissions and its implications for environmental sustainability targets Sci. Total Environ. 708 134653-493
  • [8] Jeevarathinam B(2020)The criticality of growth, urbanization, electricity and fossil fuel consumption to environment sustainability in Africa Sci. Total Environ. 712 136376-202
  • [9] Wang X(2019)Inconsistency of economic growth and electricity consumption in china: a panel var approach J. Clean. Prod. 229 144-4282
  • [10] Han Y(2012)Opportunities and challenges for a sustainable energy future Nature 488 294-586