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

被引:6
作者
Saravanakumar Balasubramaniam [1 ]
Ankita Mohanty [1 ]
Suresh Kannan Balasingam [2 ]
Sang Jae Kim [3 ]
Ananthakumar Ramadoss [1 ]
机构
[1] SchoolforAdvancedResearchinPolymers,LaboratoryforAdvancedResearchinPolymericMaterials,CentralInstituteofPlasticsEngineeringandTechnology
[2] DepartmentofMaterialsScienceandEngineering,FacultyofNaturalSciences,NorwegianUniversityofScienceandTechnology(NTNU)
[3] NanomaterialsandSystemsLaboratory,MajorofMechatronicsEngineering,FacultyofAppliedEnergySystem,JejuNationalUniversity
关键词
Supercapattery; Energy density; Power density; Redox materials; Carbon materials;
D O I
暂无
中图分类号
TM53 [电容器];
学科分类号
080801 ;
摘要
Electrochemical energy storage devices(EESs) play a crucial role for the construction of sustainable energy storage system from the point of generation to the end user due to the intermittent nature of renewable sources. Additionally, to meet the demand for next-generation electronic applications, optimizing the energy and power densities of EESs with long cycle life is the crucial factor. Great e orts have been devoted towards the search for new materials, to augment the overall performance of the EESs. Although there are a lot of ongoing researches in this field, the performance does not meet up to the level of commercialization. A further understanding of the charge storage mechanism and development of new electrode materials are highly required. The present review explains the overview of recent progress in supercapattery devices with reference to their various aspects. The di erent charge storage mechanisms and the multiple factors involved in the performance of the supercapattery are described in detail. Moreover, recent advancements in this supercapattery research and its electrochemical performances are reviewed. Finally, the challenges and possible future developments in this field are summarized.
引用
收藏
页码:47 / 92
页数:46
相关论文
共 126 条
[71]  
Biomass gasification coupled to an EFGT-ORC combined system to maximize the electrical energy generation: A case applied to the olive oil industry[J] . David Vera,Francisco Jurado,José Carpio,Salah Kamel.Energy . 2018
[72]  
Cobalt carbonate hydroxides as advanced battery-type materials for supercapatteries: Influence of morphology on performance[J] . Kalimuthu Vijaya Sankar,Youngho Seo,Su Chan Lee,Shude Liu,Aniruddha Kundu,Chaiti Ray,Seong Chan Jun.Electrochimica Acta . 2018
[73]  
MnO<SUB>2</SUB>/multiwall carbon nanotube/Ni-foam hybrid electrode for electrochemical capacitor[J] . L H Chen,L Li,W J Qian,C K Dong.IOP Conference Series: Materials Science and Engi . 2018 (1)
[74]   Achieving High Pseudocapacitance of 2D Titanium Carbide (MXene) by Cation Intercalation and Surface Modification [J].
Li, Jian ;
Yuan, Xiaotao ;
Lin, Cong ;
Yang, Yanquan ;
Xu, Le ;
Du, Xin ;
Xie, Jinglin ;
Lin, Jianhua ;
Sun, Junliang .
ADVANCED ENERGY MATERIALS, 2017, 7 (15)
[75]  
Asymmetric supercapacitor based on nanostructured porous manganese oxide and reduced graphene oxide in aqueous neutral electrolyte[J] . S. Shivakumara,N. Munichandraiah.Solid State Communications . 2017
[76]  
All-solid state asymmetric supercapacitor based on NiCoAl layered double hydroxide nanopetals on robust 3D graphene and modified mesoporous carbon[J] . Xue Bai,Qi Liu,Jingyuan Liu,Zan Gao,Hongsen Zhang,Rongrong Chen,Zhanshuang Li,Rumin Li,Peili Liu,Jun Wang.Chemical Engineering Journal . 2017
[77]  
Controlled synthesis of nanostructured molybdenum oxide electrodes for high performance supercapacitor devices[J] . Nallappan Maheswari,Gopalan Muralidharan.Applied Surface Science . 2017
[78]  
Electrical Energy Harvesting from Thermal Energy with Converged Infrared Light[J] . S Y Goh,S L Kok.IOP Conference Series: Materials Science and Engi . 2017 (1)
[79]   Supercapacitor and supercapattery as emerging electrochemical energy stores [J].
Chen, George Z. .
INTERNATIONAL MATERIALS REVIEWS, 2017, 62 (04) :173-202
[80]  
High-energy asymmetric electrochemical capacitors based on oxides functionalized hollow carbon fibers electrodes[J] . Ting Li,Wenliang Zhang,Lei Zhi,Hang Yu,Liqin Dang,Feng Shi,Hua Xu,Fangyuan Hu,Zonghuai Liu,Zhibin Lei,Jieshan Qiu.Nano Energy . 2016