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Effect of N-doping-derived solvent adsorption on electrochemical double layer structure and performance of porous carbon
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作者 Zhe-Fan Wang Cheng Tang +6 位作者 Qian Sun Ya-Lu Han Zhi-Jian Wang Lijing Xie Shou-Chun Zhang Fang-Yuan Su Cheng-Meng Chen 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第5期120-127,I0004,共9页
N-doped porous carbon has been extensively investigated for broad electrochemical applications.The performance is significantly impacted by the electrochemical double layer(EDL),which is material dependent and hard to... N-doped porous carbon has been extensively investigated for broad electrochemical applications.The performance is significantly impacted by the electrochemical double layer(EDL),which is material dependent and hard to characterize.Limited understanding of doping-derived EDL structure hinders insight into the structure-performance relations and the rational design of high-performance materials.Thus,we analyzed the mass and chemical composition variation of EDL within electrochemical operation by electrochemical quartz crystal microbalance,in-situ X-ray photoelectron spectroscopy,and time-offlight secondary ion mass spectrometry.We found that N-doping triggers specifically adsorbed propylene carbonate solvent in the inner Helmholtz plane(IHP),which prevents ion rearrangement and enhances the migration of cations.However,this specific adsorption accelerated solvent decomposition,rendering rapid performance degradation in practical devices.This work reveals that the surface chemistry of electrodes can cause specific adsorption of solvents and change the EDL structure,which complements the classical EDL theory and provide guidance for practical applications. 展开更多
关键词 Carbon materials electrochemical double layer electrochemical quartz crystal microbalance In-situ X-ray photoelectron spectroscopy N-DOPING
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Influence of nitrogen hetero-substitution on the electrochemical performance of coal-based activated carbons measured in non-aqueous electrolyte 被引量:5
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作者 ZHANG Chuan-xiang DUAN Yu-ling +3 位作者 XING Bao-lin ZHAN Liang QIAO Wen-ming LING Li-cheng 《Mining Science and Technology》 EI CAS 2009年第3期295-299,共5页
Nitrogen-containing carbons were prepared by modification of activated carbons.The modified carbons were used as electrode materials with improved electrochemical performance.Precursor anthracite was activated by KOH(... Nitrogen-containing carbons were prepared by modification of activated carbons.The modified carbons were used as electrode materials with improved electrochemical performance.Precursor anthracite was activated by KOH(KOH:anthracite= 1:1), modified by melamine or urea and then treated at 1173 K to obtain the modified carbons.The porous structure, the chemical composition and the electrochemical characteristics of the carbons were investigated by nitrogen sorption, XPS and electrochemical methods respectively.Electrochemical experiments were performed in an organic electrolytic solution of 1 M(C2H5)4NBF4/PC.The samples modified by the different methods showed differences in chemical composition that introduced varying degrees of electrochemical performance enhancement.The presence of nitrogen enhanced the electron donor properties and the surface wettability of the activated carbons:this ensured a sufficient utilization of the exposed surface for charge storage. 展开更多
关键词 activated carbon electrochemical double layer capacitor heteroatom of nitrogen modification
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Carbon-Based Electrode Materials for Supercapacitor: Progress, Challenges and Prospective Solutions 被引量:2
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作者 Xian Jian Shiyu Liu +5 位作者 Yuqi Gao Wei Tian Zhicheng Jiang Xiangyun Xiao Hui Tang Liangjun Yin 《Journal of Electrical Engineering》 2016年第2期75-87,共13页
Carbon-based materials are typical and commercially active electrode for supercapacitors due to their advantages such as low cost, good stability and easy availability. In the light of energy storage, supercapacitors ... Carbon-based materials are typical and commercially active electrode for supercapacitors due to their advantages such as low cost, good stability and easy availability. In the light of energy storage, supercapacitors mechanism is classified into EDLCs (electrochemical double layer capacitors) and pseudocapacitors. Multidimensional carbon nanomaterials (active carbon, carbon nanotube, graphene, etc.), carbon-based composite and corresponding electrolyte are the critical and important factor in the eyes of researcher. In this minireview, we will discuss the storage mechanism and summarize recent developed novel carbon and carbon-based materials in supercapacitors. The techniques to design the novel nanostructure and high performance electrodematerials that facilitate charge transfer to achieve high energy and power densities will also be discussed. 展开更多
关键词 Carbon materials storage mechanism electrochemical double layer capacitors pseudocapacitors.
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Fabrication and Electrochemical Properties of Carbon Nanotube-based Composite Electrodes for Electrochemical Capacitor Applications
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作者 Kwang Bum Kim 《复旦学报(自然科学版)》 CAS CSCD 北大核心 2007年第5期665-,共1页
1 Results Electrochemical capacitors (ECs) are expected to be used in hybrid electric vehicles in combination with batteries or fuel cells because of their higher power density than batteries. ECs using electrical dou... 1 Results Electrochemical capacitors (ECs) are expected to be used in hybrid electric vehicles in combination with batteries or fuel cells because of their higher power density than batteries. ECs using electrical double layer capacitance of carbon based materials and pseudocapacitance of transition metal oxides are called electrochemical double layer capacitors (EDLC) and supercapacitors (or pseudocapacitor), respectively. Transition metal oxides are considered the best candidates for high energy dens... 展开更多
关键词 electrochemical capacitors (ECs) electrochemical double layer capacitor (EDLC) carbon nanotubes (CNTs)
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Transformation of Supercapacitive Charge Storage Behaviour in a Multi elemental Spinel CuMn_(2)O_(4) Nanofibers with Alkaline and Neutral Electrolytes 被引量:1
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作者 Ria Kunwar Syam G.Krishnan +4 位作者 Izan Izwan Misnon Fatemeh Zabihi Shengyuan Yang Chun-Chen Yang Rajan Jose 《Advanced Fiber Materials》 CAS 2021年第4期265-274,共10页
Electrode material has been cited as one of the most important determining factors in classifying an energy storage system’s charge storage mechanism,i.e.,as battery-type or supercapacitive-type.In this paper,we show... Electrode material has been cited as one of the most important determining factors in classifying an energy storage system’s charge storage mechanism,i.e.,as battery-type or supercapacitive-type.In this paper,we show that along with the electrode material,the electrolyte also plays a role in determining the charge storage behaviour of the system.For the purpose of our research,we chose multi-elemental spinal type CuMn_(2)O_(4) metal oxide nanofibers to prove the hypothesis.The material is synthesized as nanofibers of diameter~120 to 150 nm in large scales by a pilot scale electrospinning set up.It was then tested in three different electrolytes(1 M KOH,1 M Na_(2)SO_(4) and 1 M Li_(2)SO_(4)),two of which are neutral and the third is alkaline(KOH).The cyclic voltammograms and the galvanostatic charge-discharge of the electrode material in a three-electrode sys-tem measurement showed that it exhibit different charge storage mechanism in different electrolyte solutions.For the neutral electrolytes,a capacitive behaviour was observed whereas a battery-type behaviour was seen for the alkaline electrolyte.This leads us to conclude that the charge storage mechanism,along with the active material,also depends on the electrolyte used. 展开更多
关键词 Energy storage materials electrochemical double layer capacitors Capacitive charge storage Ternary manganates Pseudocapacitors
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