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“One stone, two birds”: Salt template enabling porosity engineering and single metal atom coordinating toward high-performance zinc-ion capacitors
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作者 Chunliu Zhu Huanyu Liang +7 位作者 Ping Li Chenglong Qiu Jingyi Wu Jingwei Chen Weiqian Tian Yue Zhu Zhi Li Huanlei Wang 《Journal of Energy Chemistry》 2025年第1期637-645,共9页
Zinc-ion hybrid capacitors (ZIHCs) have received increasing attention as energy storage devices owing to their low cost,high safety,and environmental friendliness.However,their progress has been hampered by low energy... Zinc-ion hybrid capacitors (ZIHCs) have received increasing attention as energy storage devices owing to their low cost,high safety,and environmental friendliness.However,their progress has been hampered by low energy and power density,as well as unsatisfactory long-cycle stability,mainly due to the lack of suitable electrode materials.In this context,we have developed manganese single atoms implanted in nitrogen-doped porous carbon nanosheets (MnSAs/NCNs) using a metal salt template method as cathodes for ZIHCs.The metal salt serves a dual purpose in the synthesis process:It facilitates the uniform dispersion of Mn atoms within the carbon matrix and acts as an activating agent to create the porous structure.When applied in ZIHCs,the MnSAs/NCNs electrode demonstrates exceptional performance,including a high capacity of 203 m Ah g^(-1),an energy density of 138 Wh kg^(-1)at 68 W kg^(-1),and excellent cycle stability with 91%retention over 10,000 cycles.Theoretical calculations indicate that the introduced Mn atoms modulate the local charge distribution of carbon materials,thereby improving the electrochemical property.This work demonstrates the significant potential of carbon materials with metal atoms in zinc-ion hybrid capacitors,not only in enhancing electrochemical performance but also in providing new insights and methods for developing high-performance energy storage devices. 展开更多
关键词 Zinc ion hybrid capacitors Cathodes Carbon materials HETEROATOMS Single atoms
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NH_(4)^(+)-Modulated Cathodic Interfacial Spatial Charge Redistribution for High-Performance Dual-Ion Capacitors
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作者 Yumin Chen Ziyang Song +2 位作者 Yaokang Lv Lihua Gan Mingxian Liu 《Nano-Micro Letters》 2025年第5期391-406,共16页
Compared with Zn^(2+),the current mainly reported charge carrier for zinc hybrid capacitors,small-hydrated-sized and light-weight NH_(4)^(+)is expected as a better one to mediate cathodic interfacial electrochemical b... Compared with Zn^(2+),the current mainly reported charge carrier for zinc hybrid capacitors,small-hydrated-sized and light-weight NH_(4)^(+)is expected as a better one to mediate cathodic interfacial electrochemical behaviors,yet has not been unraveled.Here we propose an NH_(4)^(+)-modulated cationic solvation strategy to optimize cathodic spatial charge distribution and achieve dynamic Zn^(2+)/NH_(4)^(+)co-storage for boosting Zinc hybrid capacitors.Owing to the hierarchical cationic solvated structure in hybrid Zn(CF_(3)SO_(3))_(2)–NH_4CF_(3)SO_(3)electrolyte,high-reactive Zn^(2+)and small-hydrate-sized NH_4(H_(2)O))(4)^(+)induce cathodic interfacial Helmholtz plane reconfiguration,thus effectively enhancing the spatial charge density to activate 20%capacity enhancement.Furthermore,cathodic interfacial adsorbed hydrated NH_(4)^(+)ions afford high-kinetics and ultrastable C···H(NH_(4)^(+))charge storage process due to a much lower desolvation energy barrier compared with heavy and rigid Zn(H_(2)O)_6^(2+)(5.81 vs.14.90 eV).Consequently,physical uptake and multielectron redox of Zn^(2+)/NH_(4)^(+)in carbon cathode enable the zinc capacitor to deliver high capacity(240 mAh g^(-1)at 0.5 A g^(-1)),large-current tolerance(130 mAh g^(-1)at 50 A g^(-1))and ultralong lifespan(400,000cycles).This study gives new insights into the design of cathode–electrolyte interfaces toward advanced zinc-based energy storage. 展开更多
关键词 NH_(4)^(+)-modulated cathodic interface Spatial charge redistribution Zn^(2+)/NH_(4)^(+) co-storage Dual-ion capacitor
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All‑Covalent Organic Framework Nanofilms Assembled Lithium‑Ion Capacitor to Solve the Imbalanced Charge Storage Kinetics 被引量:3
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作者 Xiaoyang Xu Jia Zhang +6 位作者 Zihao Zhang Guandan Lu Wei Cao Ning Wang Yunmeng Xia Qingliang Feng Shanlin Qiao 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第6期246-260,共15页
Free-standing covalent organic framework(COFs)nanofilms exhibit a remarkable ability to rapidly intercalate/de-intercalate Li^(+) in lithium-ion batteries,while simultaneously exposing affluent active sites in superca... Free-standing covalent organic framework(COFs)nanofilms exhibit a remarkable ability to rapidly intercalate/de-intercalate Li^(+) in lithium-ion batteries,while simultaneously exposing affluent active sites in supercapacitors.The development of these nanofilms offers a promising solution to address the persistent challenge of imbalanced charge storage kinetics between battery-type anode and capacitor-type cathode in lithium-ion capacitors(LICs).Herein,for the first time,custom-made COFBTMB-TP and COFTAPB-BPY nanofilms are synthesized as the anode and cathode,respectively,for an all-COF nanofilm-structured LIC.The COFBTMB-TP nanofilm with strong electronegative–CF3 groups enables tuning the partial electron cloud density for Li^(+) migration to ensure the rapid anode kinetic process.The thickness-regulated cathodic COFTAPB-BPY nanofilm can fit the anodic COF nanofilm in the capacity.Due to the aligned 1D channel,2D aromatic skeleton and accessible active sites of COF nanofilms,the whole COFTAPB-BPY//COFBTMB-TP LIC demonstrates a high energy density of 318 mWh cm^(−3) at a high-power density of 6 W cm^(−3),excellent rate capability,good cycle stability with the capacity retention rate of 77%after 5000-cycle.The COFTAPB-BPY//COFBTMB-TP LIC represents a new benchmark for currently reported film-type LICs and even film-type supercapacitors.After being comprehensively explored via ex situ XPS,7Li solid-state NMR analyses,and DFT calculation,it is found that the COFBTMB-TP nanofilm facilitates the reversible conversion of semi-ionic to ionic C–F bonds during lithium storage.COFBTMB-TP exhibits a strong interaction with Li^(+) due to the C–F,C=O,and C–N bonds,facilitating Li^(+) desolation and absorption from the electrolyte.This work addresses the challenge of imbalanced charge storage kinetics and capacity between the anode and cathode and also pave the way for future miniaturized and wearable LIC devices. 展开更多
关键词 Covalent organic frameworks Lithium-ion capacitor Charge storage kinetic
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Carbon nanocages bridged with graphene enable fast kinetics for dual-carbon lithium-ion capacitors 被引量:2
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作者 Shani Li Yanan Xu +7 位作者 Wenhao Liu Xudong Zhang Yibo Ma Qifan Peng Xiong Zhang Xianzhong Sun Kai Wang Yanwei Ma 《Green Energy & Environment》 SCIE EI CAS CSCD 2024年第3期573-583,共11页
Lithium-ion capacitors(LICs) combining the advantages of lithium-ion batteries and supercapacitors are considered a promising nextgeneration energy storage device. However, the sluggish kinetics of battery-type anode ... Lithium-ion capacitors(LICs) combining the advantages of lithium-ion batteries and supercapacitors are considered a promising nextgeneration energy storage device. However, the sluggish kinetics of battery-type anode cannot match the capacitor-type cathode, restricting the development of LICs. Herein, hierarchical carbon framework(HCF) anode material composed of 0D carbon nanocage bridged with 2D graphene network are developed via a template-confined synthesis process. The HCF with nanocage structure reduces the Li^(+) transport path and benefits the rapid Li^(+) migration, while 2D graphene network can promote the electron interconnecting of carbon nanocages. In addition, the doped N atoms in HCF facilitate to the adsorption of ions and enhance the pseudo contribution, thus accelerate the kinetics of the anode. The HCF anode delivers high specific capacity, remarkable rate capability. The LIC pouch-cell based on HCF anode and active HCF(a-HCF) cathode can provide a high energy density of 162 Wh kg^(-1) and a superior power density of 15.8 kW kg^(-1), as well as a long cycling life exceeding 15,000cycles. This study demonstrates that the well-defined design of hierarchical carbon framework by incorporating 0D carbon nanocages and 2D graphene network is an effective strategy to promote LIC anode kinetics and hence boost the LIC electrochemical performance. 展开更多
关键词 Hierarchical carbon framework NANOCAGE ZIF GRAPHENE Lithium-ion capacitors
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High Density 3D Carbon Tube Nanoarray Electrode Boosting the Capacitance of Filter Capacitor
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作者 Gan Chen Fangming Han +6 位作者 Huachun Ma Pei Li Ziyan Zhou Pengxiang Wang Xiaoyan Li Guowen Meng Bingqing Wei 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第11期242-254,共13页
Electric double-layer capacitors(EDLCs)with fast frequency response are regarded as small-scale alternatives to the commercial bulky aluminum electrolytic capacitors.Creating carbon-based nanoarray electrodes with pre... Electric double-layer capacitors(EDLCs)with fast frequency response are regarded as small-scale alternatives to the commercial bulky aluminum electrolytic capacitors.Creating carbon-based nanoarray electrodes with precise alignment and smooth ion channels is crucial for enhancing EDLCs’performance.However,controlling the density of macropore-dominated nanoarray electrodes poses challenges in boosting the capacitance of line-filtering EDLCs.Herein,a simple technique to finely adjust the vertical-pore diameter and inter-spacing in three-dimensional nanoporous anodic aluminum oxide(3D-AAO)template is achieved,and 3D compactly arranged carbon tube(3D-CACT)nanoarrays are created as electrodes for symmetrical EDLCs using nanoporous 3D-AAO template-assisted chemical vapor deposition of carbon.The 3D-CACT electrodes demonstrate a high surface area of 253.0 m^(2) g^(−1),a D/G band intensity ratio of 0.94,and a C/O atomic ratio of 8.As a result,the high-density 3D-CT nanoarray-based sandwich-type EDLCs demonstrate a record high specific areal capacitance of 3.23 mF cm^(-2) at 120 Hz and exceptional fast frequency response due to the vertically aligned and highly ordered nanoarray of closely packed CT units.The 3D-CT nanoarray electrode-based EDLCs could serve as line filters in integrated circuits,aiding power system miniaturization. 展开更多
关键词 Compactly arranged Three-dimensional carbon tube nanoarray Dimensional carbon tube nanoarray Fast frequency response Electric double-layer capacitors Layer capacitors AC line-filtering FILTERING
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Coupling of Adhesion and Anti‑Freezing Properties in Hydrogel Electrolytes for Low‑Temperature Aqueous‑Based Hybrid Capacitors
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作者 Jingya Nan Yue Sun +9 位作者 Fusheng Yang Yijing Zhang Yuxi Li Zihao Wang Chuchu Wang Dingkun Wang Fuxiang Chu Chunpeng Wang Tianyu Zhu Jianchun Jiang 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第2期15-31,共17页
Solid-state zinc-ion capacitors are emerging as promising candidates for large-scale energy storage owing to improved safety,mechanical and thermal stability and easy-to-direct stacking.Hydrogel electrolytes are appea... Solid-state zinc-ion capacitors are emerging as promising candidates for large-scale energy storage owing to improved safety,mechanical and thermal stability and easy-to-direct stacking.Hydrogel electrolytes are appealing solid-state electrolytes because of eco-friendliness,high conductivity and intrinsic flexibility.However,the electrolyte/electrode interfacial contact and anti-freezing properties of current hydrogel electrolytes are still challenging for practical applications of zinc-ion capacitors.Here,we report a class of hydrogel electrolytes that couple high interfacial adhesion and anti-freezing performance.The synergy of tough hydrogel matrix and chemical anchorage enables a well-adhered interface between hydrogel electrolyte and electrode.Meanwhile,the cooperative solvation of ZnCl2 and LiCl hybrid salts renders the hydrogel electrolyte high ionic conductivity and mechanical elasticity simultaneously at low temperatures.More significantly,the Zn||carbon nanotubes hybrid capacitor based on this hydrogel electrolyte exhibits low-temperature capacitive performance,delivering high-energy density of 39 Wh kg^(-1)at-60°C with capacity retention of 98.7%over 10,000 cycles.With the benefits of the well-adhered electrolyte/electrode interface and the anti-freezing hydrogel electrolyte,the Zn/Li hybrid capacitor is able to accommodate dynamic deformations and function well under 1000 tension cycles even at-60°C.This work provides a powerful strategy for enabling stable operation of low-temperature zinc-ion capacitors. 展开更多
关键词 Interfacial adhesion ANTI-FREEZING Hydrogel electrolytes Low-temperature hybrid capacitors Dynamic deformati
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Defect engineering on BiFeO_(3) through Na and V codoping for aqueous Na-ion capacitors
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作者 Wenyun Wang Chao Yang +4 位作者 Shangjing Yu Daotong Han Wentao Qi Rui Ling Guangqiang Liu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第3期453-463,I0011,共12页
Sodium with low cost and high abundance is considered as a substitute element of lithium for batteries and supercapacitors,which need the appropriate host materials to accommodate the relatively large Na^(+) ions.Comp... Sodium with low cost and high abundance is considered as a substitute element of lithium for batteries and supercapacitors,which need the appropriate host materials to accommodate the relatively large Na^(+) ions.Compared to Li^(+) storage,Na^(+) storage makes higher demands on the structural optimization of perovskite bismuth ferrite(BiFeO_(3)).We propose a novel strategy of defect engineering on BiFeO_(3) through Na and V codoping for high-efficiency Na^(+) storage,to reveal the roles of oxygen vacancies and V ions played in the enhanced electrochemical energy storage performances of Na-ion capacitors.The formation of the oxygen vacancies in the Na and V codoped BiFeO_(3)(denoted as NV-BFO),is promoted by Na doping and suppressed by V doping,which can be demonstrated by XPS and EPR spectra.By the first-principles calculations,the oxygen vacancies and V ions in NV-BFO are confirmed to substantially lower the Na^(+)migration energy barriers through the space and electric field effects,to effectively promote the Na^(+) transport in the crystals.Electrochemical kinetic analysis of the NV-BFO//NV-BFO capacitors indicates the dominant capacitive-controlled capacity,which depends on fast Na^(+) deintercalation-intercalation process in the NV-BFO electrode.The NV-BFO//NV-BFO capacitors open up a new avenue for developing highperformance Na-ion capacitors. 展开更多
关键词 BiFeO_(3) Na^(+) storage V doping Oxygen vacancy capacitor
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Furfural residues derived nitrogen-sulfur co-doped sheet-like carbon: An excellent electrode for dual carbon lithium-ion capacitors
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作者 Xiaoying Guo Yan Qiao +4 位作者 Zonglin Yi Christian Marcus Pedersen Yingxiong Wang Xiaodong Tian Peide Han 《Green Energy & Environment》 SCIE EI CAS CSCD 2024年第9期1427-1439,共13页
The state-of-the-art lithium-ion capacitors (LICs),consisting of high-capacity battery-type anode and high-rate capacitor-type cathode,can deliver high energy density and large power density when comparing with tradit... The state-of-the-art lithium-ion capacitors (LICs),consisting of high-capacity battery-type anode and high-rate capacitor-type cathode,can deliver high energy density and large power density when comparing with traditional supercapacitors and lithium-ion batteries,respectively.However,the ion kinetics mismatch between cathode and anode leads to unsatisfied cycling lifetime and anode degradation.Tremendous efforts have been devoted to solving the abovementioned issue.One promising strategy is altering high conductive hard carbon anode with excellent structural stability to match with activated carbon cathode,assembling dual-carbon LIC.In this contribution,one-pot in-situ expansion and heteroatom doping strategy was adopted to prepare sheet-like hard carbon,while activated carbon was obtained involving activation.Ammonium persulfate was used as expanding and doping agent simultaneously.While furfural residues (FR) were served as carbon precursor.The resulting hard carbon (FRNS-HC) and activated carbon (FRNS-AC)show excellent electrochemical performance as negative and positive electrodes in a lithium-ion battery (LIB).To be specific,374.2 m Ah g^(-1)and 123.1 m Ah g^(-1)can be achieved at 0.1 A g^(-1)and 5 A g^(-1)when FRNS-HC was tested as anode.When combined with a highly porous carbon cathode (S_(BET)=2961 m^(2)g^(-1)) synthesized from the same precursor,the LIC showed high specific energy of147.67 Wh kg^(-1)at approximately 199.93 W kg^(-1),and outstanding cycling life with negligible capacitance fading over 1000 cycles.This study could lead the way for the development of heteroatom-doped porous carbon nanomaterials applied to Li-based energy storage applications. 展开更多
关键词 Furfural residue Ammonium persulfate Sheet-like carbon Lithium-ion capacitors Hard carbon
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Asymmetric Zn-N_4 atomic sites embedded hollow fibers as stable Zn anode for high-performance Zn-ion hybrid capacitor
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作者 Yukun Liu Bing Li +5 位作者 Jin Wang Caiyun Li Hongrui Yang Yang Song Sen Zhang Chao Deng 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第10期460-469,I0009,共11页
Zn based electrochemical energy storage systems(EES)have attracted tremendous interests owing to their low cost and high intrinsic safety.Nevertheless,the uncontrolled growth of Zn dendrites and the side reactions of ... Zn based electrochemical energy storage systems(EES)have attracted tremendous interests owing to their low cost and high intrinsic safety.Nevertheless,the uncontrolled growth of Zn dendrites and the side reactions of Zn metal anodes(ZMAs)severely restrict their applications.To address these issues,we design the asymmetric Zn-N_(4) atomic sites embedded hollow fibers(AS-IHF)as the flexible host for stable ZMAs.Through introducing different nitrogen resources in the synthesis,two kinds of coordination,i,e.Zn-N(pyridinic)and Zn-N(pyrrolic),are introduced in the Zn-N_(4) atomic module synchronously.The asymmetric Zn-N_(4) module with regulated micro-environment facilitates the superior zincophilic features and promotes the Zn adsorption.Meanwhile,the highly porous structure of the hollow fiber effectively reduces local current density,homogenize Zn ion flux,and alleviate structure stress.All the advantages endow the high efficiency and good stability for Zn plating/stripping.Both theoretical and experimental results demonstrate the high reversibility,low nucleation overpotential,and dendritefree behavior of the AS-IHF@Zn anode,which afford the high stability in high-rate and long-term cycling.Moreover,the solid-state Zn-ion hybrid capacitor(ZIHC)based on AS-IHF@Zn anode shows the high flexibility,reliability,and superior long-term cycling capability in a wide-range of temperatures(-20-25℃).Therefore,the present work not only gives a new strategy for modulating local environments of single atomic sites,but also propels the development of flexible power sources for diverse electronics. 展开更多
关键词 Asymmetric coordination Single atomic sites Zincophilic sites Dendrite free behavior Zn-ion hybrid capacitor
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Vacancy defect MoSeTe embedded in N and F co-doped carbon skeleton for high performance sodium ion batteries and hybrid capacitors
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作者 Dehui Yang Wentao Guo +6 位作者 Fei Guo Jiaming Zhu Gang Wang Hui Wang Guanghui Yuan Shenghua Ma Beibei Wang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第3期652-664,I0014,共14页
Sodium-ion batteries(SIBs) and hybrid capacitors(SIHCs) have garnered significant attention in energy storage due to their inherent advantages,including high energy density,cost-effectiveness,and enhanced safety.Howev... Sodium-ion batteries(SIBs) and hybrid capacitors(SIHCs) have garnered significant attention in energy storage due to their inherent advantages,including high energy density,cost-effectiveness,and enhanced safety.However,developing high-performance anode materials to improve sodium storage performa nce still remains a major challenge.Here,a facile one-pot method has been developed to fabricate a hybrid of MoSeTe nanosheets implanted within the N,F co-doped honeycomb carbon skeleton(MoSeTe/N,F@C).Experimental results demonstrate that the incorporation of large-sized Te atoms into MoSeTe nanosheets enlarges the layer spacing and creates abundant anion vacancies,which effectively facilitate the insertion/extraction of Na^(+) and provide numerous ion adsorption sites for rapid surface capacitive behavior.Additionally,the heteroatoms N,F co-doped honeycomb carbon skeleton with a highly conductive network can restrain the volume expansion and boost reaction kinetics within the electrode.As anticipated,the MoSeTe/N,F@C anode exhibits high reversible capacities along with exceptional cycle stability.When coupled with Na_(3)V_(2)(PO_(4))_(3)@C(NVPF@C) to form SIB full cells,the anode delivers a reversible specific capacity of 126 mA h g^(-1) after 100 cycles at 0.1 A g^(-1).Furthermore,when combined with AC to form SIHC full cells,the anode demonstrates excellent cycling stability with a reversible specific capacity of50 mA h g^(-1) keeping over 3700 cycles at 1.0 A g^(-1).In situ XRD,ex situ TEM characterization,and theoretical calculations(DFT) further confirm the reversibility of sodium storage in MoSeTe/N,F@C anode materials during electrochemical reactions,highlighting their potential for widespread practical application.This work provides new insights into the promising utilization of advanced transition metal dichalcogenides as anode materials for Na^(+)-based energy storage devices. 展开更多
关键词 MoSeTe N F co-doped honeycomb carbon skeleton Sodium-ion batteries Sodium-ion hybrid capacitor
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Reliability of DC-link capacitor in pulsed power supply for accelerator magnet
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作者 Jie Wang Da-Qing Gao +2 位作者 Wan-Zeng Shen Hong-Bin Yan Li-Jun Mao 《Nuclear Science and Techniques》 SCIE EI CAS CSCD 2024年第9期28-40,共13页
Capacitors are widely used in pulsed magnet power supplies to reduce ripple voltage,store energy,and decrease power variation.In this study,DC-link capacitors in pulsed power supplies were investigated.By deriving an ... Capacitors are widely used in pulsed magnet power supplies to reduce ripple voltage,store energy,and decrease power variation.In this study,DC-link capacitors in pulsed power supplies were investigated.By deriving an analytical method for the capacitor current on the H-bridge topology side,the root-mean-square value of the capacitor current was calculated,which helps in selecting the DC-link capacitors.The proposed method solves this problem quickly and with high accuracy.The current reconstruction of the DC-link capacitor is proposed to avoid structural damage in the capacitor’s current measurement,and the capacitor’s hotspot temperature and temperature rise are calculated using the FFT transform.The test results showed that the error between the calculated and measured temperature increases was within 1.5℃.Finally,the lifetime of DC-link capacitors was predicted based on Monte Carlo analysis.The proposed method can evaluate the reliability of DC-link capacitors in a non-isolated switching pulsed power supply for accelerators and is also applicable to film capacitors. 展开更多
关键词 Aluminum electrolytic capacitor DC-link current DC–DC power converter Hotspot temperature
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爆炸冲击对电子雷管发火电容释能特性的影响
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作者 李洪伟 王家乐 +4 位作者 梁昊 周恩 孙翼 章万龙 郭子如 《兵工学报》 北大核心 2025年第3期225-233,共9页
为了探究爆炸冲击作用对电子雷管发火能量的影响,利用水下爆炸的方法对液态铝电解电容进行7组不同强度的冲击实验,研究电容在冲击载荷下的介电击穿行为和漏电流变化规律。分析电子雷管电容的能量损耗途径,建立电子雷管的冲击-发火模型,... 为了探究爆炸冲击作用对电子雷管发火能量的影响,利用水下爆炸的方法对液态铝电解电容进行7组不同强度的冲击实验,研究电容在冲击载荷下的介电击穿行为和漏电流变化规律。分析电子雷管电容的能量损耗途径,建立电子雷管的冲击-发火模型,得到冲击波超压与电子雷管发火能量之间的函数关系。研究结果表明:在8.5~40.6 MPa的冲击波超压作用下,实验电容样品会发生介电击穿,随着冲击波超压的增大,电容发生介电击穿时电压下降幅度呈指数级增长;当冲击波超压超过某一临界值时,电容发生介电击穿后无法完全自愈,漏电流增大到毫安级,均值为1.62 mA;随着冲击波强度的增大,电子雷管发火能量逐渐减小,并在漏电流增大时发火能量出现骤降。 展开更多
关键词 电子雷管 铝电解电容 水下爆炸 介电击穿 漏电流
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基于STM32的小麦籽粒含水率在线检测系统设计
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作者 姬虹 李康 +3 位作者 宋东方 王万章 李保谦 冯伟 《农机化研究》 北大核心 2025年第5期94-101,共8页
为满足联合收获机小麦含水率在线检测需求,设计了一种基于STM32的小麦籽粒含水率在线检测系统。该系统使用STM32F103RCT6嵌入式芯片作为硬件开发平台,采用同侧圆弧电容式含水率检测传感器作为采集终端,经过电路与STM32单片机处理后,将RS... 为满足联合收获机小麦含水率在线检测需求,设计了一种基于STM32的小麦籽粒含水率在线检测系统。该系统使用STM32F103RCT6嵌入式芯片作为硬件开发平台,采用同侧圆弧电容式含水率检测传感器作为采集终端,经过电路与STM32单片机处理后,将RS485采集的数据通过4G发送到云服务器进行数据交互的M2M双向数据传输设备,实现串口设备的无线长距离数据传输,进而实现远程数据通信管理,具有良好的人机交互性。台架验证试验结果表明:性能可靠,检测含水率最大绝对误差为0.87%,最小绝对误差为0.07%,其平均绝对误差为0.29%,相对误差值均小于10%,平均相对误差为4.7%,系统含水率检测值与实际含水率检测值拟合,R^(2)=0.9685能够满足联合收获机谷物含水率在线检测要求。 展开更多
关键词 小麦籽粒 联合收获机 含水率 在线检测 STM32 同侧圆弧电容器
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一种新型交错并联准Z源高增益变换器
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作者 张涛 李云飞 +3 位作者 张丽 韩庆林 张亚飞 白文龙 《太阳能学报》 北大核心 2025年第3期272-279,共8页
针对传统交错并联高增益变换器往往需要较大的占空比才可以达到较高输出电压的问题,提出一种新型交错并联准Z源高增益变换器(IPSCN-QZS)结构,通过将传统的交错并联高增益变换器的电感元件更改为准Z源网络同时加入开关电容单元共同构成... 针对传统交错并联高增益变换器往往需要较大的占空比才可以达到较高输出电压的问题,提出一种新型交错并联准Z源高增益变换器(IPSCN-QZS)结构,通过将传统的交错并联高增益变换器的电感元件更改为准Z源网络同时加入开关电容单元共同构成升压结构,实现高电压增益。首先,详细分析IPSCN-QZS变换器的工作原理,推导出电压增益,二极管以及开关管电压应力。然后,搭建一个947 W的试验样机进行验证,实验结果与Matlab/Simulink仿真软件以及理论分析的结果一致,验证了IPSCN-QZS变换器的正确性和可行性。 展开更多
关键词 高增益 开关电容 准Z源 变换器 交错并联
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高增益MO-TFT心率信号检测前置放大器研究
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作者 吴朝晖 陈家琳 +1 位作者 赵明剑 李斌 《华南理工大学学报(自然科学版)》 北大核心 2025年第3期80-87,共8页
金属氧化物薄膜晶体管(MO-TFT)可以用来实现检测心率信号的柔性可穿戴系统,但MO-TFT缺少高性能互补器件,导致实现的前置放大器增益较小,而且MO-TFT器件的性能较差,给后级模块的设计带来了困难。为提升前置放大器的增益,降低后级电路对... 金属氧化物薄膜晶体管(MO-TFT)可以用来实现检测心率信号的柔性可穿戴系统,但MO-TFT缺少高性能互补器件,导致实现的前置放大器增益较小,而且MO-TFT器件的性能较差,给后级模块的设计带来了困难。为提升前置放大器的增益,降低后级电路对器件性能的要求,该文提出了一种共源共栅电容自举结构前置放大器。该前置放大器主要由外部耦合偏置模块和核心放大器模块构成;核心放大器模块使用稳定性好、输出电压摆幅大和功耗低的电容自举技术,并结合了共源共栅结构,以提升电路的整体增益;外部耦合偏置模块使用功耗较低、输入阻抗较大和工作点设置简单的交流耦合外部偏置结构,以满足心率信号检测前置放大器的带通要求。采用10μm IZO-TFT工艺对所提出的前置放大器进行设计和流片测试,结果表明:在20 V电源电压条件下,该放大器的增益为35 dB,带宽为2 Hz~2 kHz,噪声均方根值为118.2μV,功耗为0.1 mW,实现的前置放大器满足心率信号检测要求;与现有的MO-TFT心率信号检测前置放大器相比,所设计的前置放大器增益提升了约10 dB,降低了后级模块对器件性能的要求,有利于实现模拟信号的数字化,保持信号的完整性。 展开更多
关键词 金属氧化物薄膜晶体管 心率信号检测 前置放大器 电容自举结构
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一种前后台结合的Pipelined ADC校准技术
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作者 薛颜 徐文荣 +2 位作者 于宗光 李琨 李加燊 《半导体技术》 CAS 北大核心 2025年第1期46-54,共9页
针对Pipelined模数转换器(ADC)中采样电容失配和运放增益误差带来的非线性问题,提出了一种前后台结合的Pipelined ADC校准技术。前台校准技术通过对ADC量化结果的余量分析,补偿相应流水级的量化结果,后台校准技术基于伪随机(PN)注入的方... 针对Pipelined模数转换器(ADC)中采样电容失配和运放增益误差带来的非线性问题,提出了一种前后台结合的Pipelined ADC校准技术。前台校准技术通过对ADC量化结果的余量分析,补偿相应流水级的量化结果,后台校准技术基于伪随机(PN)注入的方式,利用PN的统计特性校准增益误差。本校准技术在系统级建模和RTL级电路设计的基础上,实现了现场可编程门阵列(FPGA)验证并成功流片。测试结果显示,在1 GS/s采样速率下,校准精度为14 bit的Pipelined ADC的有效位数从9.30 bit提高到9.99 bit,信噪比提高约4 dB,无杂散动态范围提高9.5 dB,积分非线性(INL)降低约10 LSB。 展开更多
关键词 Pipelined模数转换器(ADC) 电容失配 增益误差 前台校准 后台校准
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一种高性能并网逆变器的控制策略研究
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作者 张涛 苏建徽 杨向真 《太阳能学报》 北大核心 2025年第1期449-459,共11页
针对传统并网逆变器控制系统存在静差和富含背景谐波的非理想电网电压下网侧电流质量不高等问题,提出一种高性能并网逆变器的控制策略。首先采用反Park变换(IPT)方法构造网侧电流正交分量,然后在dq旋转坐标系下建立网侧电流控制环路,再... 针对传统并网逆变器控制系统存在静差和富含背景谐波的非理想电网电压下网侧电流质量不高等问题,提出一种高性能并网逆变器的控制策略。首先采用反Park变换(IPT)方法构造网侧电流正交分量,然后在dq旋转坐标系下建立网侧电流控制环路,再选用PI控制器实现电流无差跟踪。为了解决并网电流的谐波问题,引入多谐振控制器,抑制并网电流的低次谐波。在静止坐标系下推导并网逆变器控制系统的数学模型,提出控制系统中PI控制器和多谐振控制器参数的简化设计方法,分析所提控制系统的鲁棒性;最后,针对6 kW单相LCL型并网逆变器控制系统,通过仿真和实验验证所提控制策略的正确性和有效性。 展开更多
关键词 并网逆变器 正交分量构造 多谐振控制器 参数设计 电容电流反馈
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不同栅氧退火工艺下的SiC MOS电容及其界面电学特性
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作者 付兴中 刘俊哲 +4 位作者 薛建红 尉升升 谭永亮 王德君 张力江 《半导体技术》 CAS 北大核心 2025年第1期32-38,共7页
SiC MOS电容的电学特性和栅氧界面特性是评价和改进SiC MOS器件制造工艺的重要依据。通过依次测试SiC MOS器件的氧化物绝缘特性、界面态密度、偏压温度应力不稳定性(偏压温度应力条件下的平带电压漂移)、氧化物陷阱电荷密度和可动电荷... SiC MOS电容的电学特性和栅氧界面特性是评价和改进SiC MOS器件制造工艺的重要依据。通过依次测试SiC MOS器件的氧化物绝缘特性、界面态密度、偏压温度应力不稳定性(偏压温度应力条件下的平带电压漂移)、氧化物陷阱电荷密度和可动电荷密度的方法,对分别经过氮等离子体氧化后退火(POA)处理、氮氢混合等离子体POA处理、氮氢氧混合等离子体POA处理、氮氢氯混合等离子体POA处理的SiC MOS电容的电学特性和栅氧界面特性进行了分析。结果表明,该方法可以系统地评价SiC MOS电容电学特性和栅氧界面特性,经过氮氢氯混合等离子体POA处理的SiC MOS电容可以满足高温、大场强下长期运行的性能指标。 展开更多
关键词 SiC MOS电容 氧化后退火(POA) 平带电压漂移 氧化物陷阱电荷 可动电荷
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滤波参数对逆变器输出波形的影响研究
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作者 汪志成 李紫微 +1 位作者 陈经纬 嵇志腾 《现代电子技术》 北大核心 2025年第4期10-17,共8页
为了探究滤波电感、电容、滤波器结构及磁芯材料对逆变器输出波形的影响,文中设计一种LLC型滤波结构。在双极性驱动方式下,LLC型滤波电感、电容参数增大,逆变器输出波形对称性更好。但随着参数持续增大,该滤波结构会引起输出波形起始波... 为了探究滤波电感、电容、滤波器结构及磁芯材料对逆变器输出波形的影响,文中设计一种LLC型滤波结构。在双极性驱动方式下,LLC型滤波电感、电容参数增大,逆变器输出波形对称性更好。但随着参数持续增大,该滤波结构会引起输出波形起始波动时间延长,波动程度增大,电路阻抗、无功功率增加及波形过矫正。对LC型、LLC型、LCL型三种滤波结构的对比研究结果表明:在电感、电容参数为3 mH和14.1μF时,三种结构都具备较好的滤波特性;LLC型滤波结构具备更好的线路阻抗平衡特性,输出波形对称性更好。研究了铁硅铝、锰锌铁氧体以及非晶纳米晶三种磁芯材料对LLC型滤波特性的影响,发现在参数相同时,磁导率越高波形对称性越差,阻抗变大会导致逆变输出波形畸变。因此,在逆变器滤波设计中应综合考虑电感、电容、磁导率及线路阻抗平衡问题,以提高滤波器的工作性能。 展开更多
关键词 LLC谐振 滤波电感 滤波电容 滤波结构 逆变器 线路阻抗 磁导率
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飞跨电容型三电平Buck变换器双闭环控制研究
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作者 韩锟 马晓慧 李蔚 《铁道科学与工程学报》 北大核心 2025年第2期829-840,共12页
飞跨电容型三电平Buck变换器因具有输出电压电流谐波小、开关管电压应力小等优势在轨道交通储能系统中被广泛应用。为保证其中点电位平衡的同时提高其输出电流、电压品质,在对输出电压与飞跨电容电压解耦的基础上提出一种模型预测控制... 飞跨电容型三电平Buck变换器因具有输出电压电流谐波小、开关管电压应力小等优势在轨道交通储能系统中被广泛应用。为保证其中点电位平衡的同时提高其输出电流、电压品质,在对输出电压与飞跨电容电压解耦的基础上提出一种模型预测控制与自抗扰控制相结合的双闭环控制方法。电流内环采用引入飞跨电容电压调节速率因子的连续集模型预测控制策略,该方法开关频率固定,不需要调节评价函数的权重系数,能降低控制器设计难度,通过微调开关管占空比实现对外恒流充电工况和中点电位平衡控制,利用李雅普诺夫理论分析了内环的稳定性。电压外环采用基于粒子群参数寻优的自抗扰控制器,实时估计并补偿负载突变等扰动,改善系统的抗扰能力,满足对外恒压充电工况的需求。这种双闭环结构限制了变换器最大峰值电流,保证了变换器可靠运行。在50 kHz开关频率下进行仿真和半实物实验,结果表明所提控制策略将飞跨电容电压稳定在输入电压的一半,保证了中点电位平衡,在此基础上实现了恒流和恒压输出。其中,对于输出电流单环控制,模型预测控制与PI控制器相比表现出更快的响应速度;对于电压电流双闭环控制,所提控制策略的响应时间比PI双闭环控制提升了44%,当输入电压和负载电阻发生突变时,所提控制策略与PI控制相比输出电压超调量更小、调节时间更短。 展开更多
关键词 飞电容三电平降压变换器 解耦控制 模型预测控制 最优控制律 自抗扰控制
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