论文名称 | 期刊名称 | 作者 | 体系 |
Directional Regulation on Single-Molecule
Redox-Targeting Reaction in Neutral Zinc-Iron Flow Batteries 液流电池氧化还原靶向反应调控研究成果 | Joule (IF=38.6) | 上海交通大学 纪亚&王庆 | 锌铁 |
Assembling-induced redox property adjustment of
Fe(III)/Fe(IV) electroredox couple-based commercial dye catholyte via
bio-inspired multicoordination sphere construction strategy for stable
aqueous redox flow batteries 通过仿生多级配位环境构建策略实现稳定的水系氧化还原液流电池 | Energy Storage Materials (IF=18.9) | 天津大学 李彬&杨坤龙 | 有机 |
Hierarchically Porous Carbon Colloidal Aerogels
for Highly Efficient Flow Cells 分级多孔碳胶体气凝胶增效液流电池 | Advanced Functional Materials (IF=18.5) | 中科院苏州纳米所 张学同&侯英来 | 全钒 铁铬 锌溴 钒铁 MB FMN-Na TEMPO |
Self-Standing Covalent Organic Polymer Membrane
with High Stability and Enhanced Ion-Sieving Effect for Flow Battery 用于液流电池的高稳定性和高选择性自支撑共价有机聚合物膜 | Angewandte Chemie International Edition(IF=16.1) | 清华大学 王保国&甄翊含 | 全钒 |
High-stable all-iron redox flow battery with
innovative anolyte based on steric hindrance regulation 基于空间位阻调节的高稳定性全铁氧化还原液流电池 | Angewandte Chemie International Edition(IF=16.1) | 北京化工大学 孙振宇&杨家辉 | 全铁 |
Meta-substituted thienoviologen with enhanced
radical stability via π-π interaction modulation for neutral
aqueous organic flow batteries 锁定共轭平面含硫紫精,赋能水系有机液流电池 | Energy Storage Materials(IF=18.9) | 西安交通大学 何刚&刘旭 | 有机 |
Soft–hard zwitterionic additives for aqueous
halide flow batteries 软硬两性离子添加剂助力卤化物液流电池 | Nature (IF=50.5) | 美国威斯康星大学麦迪逊分校 冯大卫 | 卤化物 |
Regulating the electrolyte network to accelerate
reversible I-/I2Br- conversion and
suppress zinc dendrite formation in advanced zinc-iodine flow battery 水合共晶溶剂同时调控碘转化及锌沉积构建锌碘液流电池 | Journal of Materials Chemistry A (IF=10.8) | 哈尔滨工业大学 卢松涛&张红 | 锌碘 |
Enhancing Battery Performance through Solvation
StructureModulation of Iron−Chromium Electrolytes Using Guanidine Hydrochloride 盐酸胍调节负极电解液的溶剂化结构赋能铁铬液流电池 | ACS Applied Energy Materials(IF=5.5) | 中科院过程工程研究所 张洋&李兆昕 | 铁铬 |
Promoted efficiency of zinc bromine flow
batteries with catalytic Co-N-C composite cathode 使用具有催化作用的Co-N-C复合阴极提高锌溴液流电池的效率 | Journal of Power Sources (IF=8.1) | 中科院北京纳米能源所 蒲雄 | 锌溴 |
Supramolecular Modifying Nafion with
Fluoroalkyl-Functionalized Polyoxometalate Nanoclusters for High-Selective
Proton Conduction 基于多金属氧酸盐纳米团簇的超分子修饰Nafion膜用于高选择性质子传导 | Angewandte Chemie International Edition(IF=16.1) | 吉林大学李昊龙 | 全钒 |
High rate lithium slurry flow batteries enabled
by an ionic exchange Nafion composite membrane incorporated with LLZTO
fillers 加入LLZTO填料的离子交换 Nafion 复合膜可实现高倍率锂浆液流电池 | Nano Energy(IF=16.8) | 中科院过程所 张锁江院士 | 锂浆料 |
Durable CO2 conversion in the
proton-exchange membrane system 质子交换膜系统中持久的CO2转化 | Nature (IF=50.5) | 华中科技大学 夏宝玉&房文生 | CO2RR |
Biomimetic Naphthoquinone Zwitterion Derivative
with Water-Solubilizing Amino Acid Side Chain for High-Stability Aqueous
Redox Flow Batteries 具有水溶性氨基酸侧链的仿生萘醌两性衍生物用于高稳定性水系液流电池 | ACS Energy Letters (IF=19.5) | 南京大学 金钟&刘玉竹 | 有机 |
Phosphoric acid pre-swelling strategy
constructing acid-doped fluoropoly(aryl pyridinium) membranes to enable
high-performance vanadium flow batteries 采用磷酸预溶胀策略构建酸掺杂含氟聚(芳基吡啶鎓)膜实现高性能钒液流电池 | Chemical Engineering Journal (IF=13.4) | 大连理工大学 朱秀玲&班涛 | 全钒 |
Constructing high-performance poly(terphenyl
pyridinium) membranes through efficient acid doping and controllable
crosslinking for vanadium flow batteries 通过高效酸掺杂和可控交联策略构建高性能聚(三联苯吡啶鎓)膜用于钒液流电池 | Chemical Engineering Journal (IF=13.4) | 大连理工大学 朱秀玲&班涛 | 全钒 |
Ionic-Nanophase Hybridization of Nafion by
Supramolecular Patching for Enhanced Proton Selectivity in Redox Flow
Batteries 通过超分子对Nafion进行离子-纳米相混合以增强其在液流电池的质子选择性 | Nano Letters (IF=10.8) | 吉林大学 李昊龙 | 全钒 |
A flow-rate-aware data-driven model of vanadium
redox flow battery based on gated recurrent unit neural network 基于门控递归单元神经网络的钒氧化还原液流电池流量感知数据驱动模型 | Journal of Energy Storage (IF=8.9) | 武汉理工大学 熊斌宇 | 全钒 |
Cross-linked sulfonated polyimide membranes with
excellent proton selectivity and ultra-long cycle life for vanadium flow
batteries 具有优异质子选择性和长循环寿命的交联磺化聚酰亚胺膜用于全钒液流电池 | Journal of Membrane Science (IF=8.4) | 西南科技大学 张亚萍&李劲超龙俊 | 全钒 |
Enhanced chemical stability and H+/V4+
selectivity of microporous sulfonated polyimide via a triptycene-based
crosslinker 以三蝶烯为交联剂的交联磺化聚酰亚胺膜用以提高化学稳定性和离子选择性 | Journal of Power Sources (IF=8.1) | 天津工业大学 马小华&储家琛 | 全钒 |
A high-Performance Polyimide Composite
Membrane with Flexible Polyphosphazene Derivatives for Vanadium Redox Flow
Battery 用于钒液流电池的含有柔性聚磷腈衍生物的高性能聚酰亚胺复合膜 | ACS Applied Materials & Interfaces (IF=8.5) | 四川大学 王刚 & 王瑞林 | 全钒 |
Redox flow batteries: Asymmetric design analysis
and research methods 液流电池-不对称设计分析与研究方法 | Journal of Energy Storage (IF=8.9) | 桂林电子科技大学 黄泽波&刘阳升 |
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Enhanced selectivity of SPEEK membrane incorporated
covalent organic nanosheet crosslinked graphene oxide for vanadium redox flow
battery 通过共价有机纳米片交联氧化石墨烯增强SPEEK膜选择性用于VRFB | Journal of Membrane Science (IF=8.4) | 曲阜师范大学 张雨霞 | 全钒 |
A comprehensive study in experiments combined
with simulations for vanadium redox flow batteries at different temperatures 不同温度下钒液流电池实验与模拟的综合研究 | Journal of Energy Storage (IF=8.9) | 吉林大学 曲大为&柴宇惟 | 全钒 |
Lithium Ferrocyanide Catholyte for High-Energy
and Low-cost Aqueous Redox Flow Batteries 亚铁氰化锂降本增效水系氧化还原液流电池 | Angewandte Chemie International Edition (IF=16.1) | 哈尔滨工业大学 吴晓宏&李晓彤 | 锌铁 |
Investigation of branched sulfonated polyimide
membranes containing self-synthesized trianhydride monomer for vanadium flow
battery via a combined theoretical-experimental strategy 含自合成三酸酐单体的支化磺化聚酰亚胺膜用于钒液流电池 | Journal of Energy Storage (IF=8.9) | 西南科技大学 张亚萍&黄文恒 | 全钒 |
A Novel Sulfonated Polyimide Composite Membrane
Containing a Sulfonated Porous Material for All-Vanadium Redox Flow Batteries 一种用于全钒液流电池的含磺化多孔材料的新型磺化聚酰亚胺复合膜 | ACS Applied Materials & Interfaces (IF=8.5) | 四川大学 王刚 & 王瑞林 | 全钒 |
Asymmetric supporting electrolyte strategy for
electrolyte imbalance mitigation of org 不对称支持电解质策略用于缓解有机氧化还原液流电池电解液的不平衡问题 | Journal of Energy Storage (IF=8.9) | 浙江大学 郑梦莲 | 有机 |
Numerical analysis of the design optimization
obstruction to guide electrolyte flow in vanadium flow batteries 钒液流电池导流优化设计的数值分析 | Journal of Energy Storage (IF=8.9) | 桂林电子科技大学 黄泽波&谢兴&刘沂林 | 全钒 |
High-performance amphoteric poly (ether ether
ketone) composite membrane regulated by cross-linked interspersed structure
for vanadium redox flow battery 钒液流电池用交联穿插结构调控的高性能两性聚醚醚酮复合膜 | Journal of Energy Storage (IF=8.9) | 徐州工程学院 钱彭华 | 全钒 |
Ultrahigh ion selectivity composite membrane
contained cationic covalent organic nanosheets for vanadium redox flow
battery 钒液流电池用含阳离子共价有机纳米片的超高离子选择性复合膜 | Journal of Membrane Science (IF=8.4) | 曲阜师范大学 张雨霞&刘浩杰 | 全钒 |
Sulfonated polyimide membranes with branched
architecture and unique diamine monomer for implementation in vanadium redox
flow battery 具有支化结构和独特二胺单体的磺化聚酰亚胺膜用于钒氧化还原液流电池 | Journal of Power Sources (IF=8.1) | 西南科技大学 张亚萍&李劲超 | 全钒 |
Redox flow battery: Flow field design based on
bionic mechanism with different obstructions 基于仿生机制的不同阻块液流电池流场设计 | Chemical Engineering Journal (IF=13.4) | 桂林电子科技大学 黄泽波&谢兴博士&刘沂林 | 全钒 |
Numerical and experimental study on fractal flow
field for improving the performance of non-aqueous redox flow battery 基于分形流场改善非水系氧化还原液流电池性能的数值模拟与实验研究 | Journal of Power Sources (IF=8.1) | 江苏大学 徐谦&石惠 | 钒铁 |
Evaluation of the effect of hydrogen evolution
reaction on the performance of all-vanadium redox flow batteries 析氢反应对全钒液流电池性能影响的评价 | Electrochimica acta (IF=5.5) | 桂林电子科技大学 黄泽波&马涛 | 全钒 |
Poly(biphenyl piperidinium) Amphiphilic
Membranes Functionalized with Propyl Sulfonic Acid and Octadecyl Side
Chains for Vanadium Redox Flow Batteries 钒氧化还原液流电池用丙磺酸和十八烷基侧链功能化的聚(联苯哌啶)两性膜 | Applied Polymer Materials (IF=4.5) | 常州大学 汪称意 | 全钒 |
High-performance SPEEK membrane with
polydopamine-bridged PTFE nanoparticles for vanadium redox flow batteries 带有聚多巴胺桥接PTFE纳米颗粒的高性能SPEEK膜用于钒氧化还原液流电池 | Journal of Energy Storage (IF=8.9) | 上海交通大学 纪亚 王体东 | 全钒 |
Initiating a composite membrane with a localized
high iodine concentration layer based on adduct chemistry to enable highly
reversible zinc–iodine flow batteries 基于加合物化学具有局部高碘浓度层的复合膜以实现高度可逆的锌碘液流电池 | Chemical Science (IF=7.6) | 深圳理工大学 梁国进 | 锌碘 |
A novel high-efficiency integrated system
combining a thermally regenerative electrochemical cycle and a flow battery 将热再生电化学循环和液流电池相结合的新型高效集成系统 | Journal of Materials Chemistry A (IF=10.8) | 天津大学 赵力&邓帅&王渤 | 全钒 |
Development of high−performance and ultra−stability hierarchical nested−network−pore carbon electrode for vanadium redox flow
batteries 一种用于钒液流电池的高性能和超稳定的分级嵌套网络孔隙碳电极的开发方法 | Journal of Energy Storage (IF=8.9) | 西安交通大学 杨卫卫&李家宸 | 全钒 |
Construction and Investigation of Novel
Cross-Linked Fluorine-Containing Sulfonated Polyimide Membranes for VFB
Application 用于VFB的交联型含氟磺化聚酰亚胺膜的构建和研究 | ACS Applied Materials & Interfaces (IF=8.5) | 西南科技大学 张亚萍&李劲超 | 全钒 |
Numerical Analysis and Research on Mass Transfer
Performance of Vanadium Redox Flow Battery Based on Novel Spiral Flow Field 基于新型螺旋流场的钒液流电池传质性能数值分析与研究 | Journal of The Electrochemical Society (IF=3.1) | 桂林电子科技大学 黄泽波 | 全钒 |
Efficient and durable vanadium flow battery
enabled by high-performance fluorinated poly(aryl piperidinium) membranes 采用高性能氟化聚芳基哌啶膜实现高效耐用的钒液流电池 | Journal of Materials Chemistry A (IF=10.8) | 大连理工大学 朱秀玲&班涛 | 全钒 |
Effect of Operating Conditions on the Capacity of
Vanadium Redox Flow Batteries 运行工况对钒液流电池容量的影响 | Journal of The Electrochemical Society | 桂林电子科技大学 黄泽波&马涛 | 全钒 |
A bifunctional electrocatalytic graphite felt for
stable aqueous zincpolyiodide flow batteries 一种用于锌-碘液流电池的双功能电催化石墨毡 | Journal of Power Sources (IF=8.1) | 哈尔滨工业大学 张红和安徽大学鹿可 | 锌碘 |
Continuous Flow Electrochemical Synthesis of
Olivine-Structured NaFePO4 Cathode Material for Sodium-Ion
Batteries from Recycle LiFePO4 从退役LiFePO4到NaFePO4—连续流电化学合成橄榄石结构NaFePO4材料 | Small (IF=13) | 中国科学院宁波材料技术与工程研究所夏永高&宁波工程学院元家树 |
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Continuous Flow-Electrochemical Coupling
Technology for Metal Nanoparticle Synthesis: Applications for Catalysis 连续流动-电化学耦合反应技术制备纳米金属颗粒 | ACS Appl. Nano Mater | 中国科学院宁波材料技术与工程研究所夏永高&宁波工程学院元家树 |
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Simultaneously improved H+ conductivity and
H+/V4+ selectivity for all vanadium flow battery by ZIF-8 induced physical
cross-linking 通过ZIF-8诱导的物理交联同时提高全钒液流电池的H+电导率和H+/V4+选择性 | Journal of energy storage (IF=8.9) | 天津工业大学 马小华 | 全钒 |
A sulfonated polyimide containing imidazole ring
with a low vanadium ion permeable for vanadium redox flow battery 一种含咪唑环的低钒离子渗透率新型磺化聚酰亚胺膜用于全钒液流电池 | Polymer (IF=4.7) | 四川大学 王刚 | 全钒 |
Realizing ampere-level CO2 electrolysis
at low-voltage over woven network of few-atom-layer ultralong silverene
nanobelts with ultrahigh aspect rations via paired with formaldehyde
oxidation 高效催化剂与配对反应组合在超低电压下实现安培级CO2电解制备化工原料 | Nanoscale (IF=5.8) | 重庆大学 周小元&张敏 |
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In situ growth of CoO on MXene sheets for
modification of all‑vanadium redox flow battery electrodes 在MXene片上原位生长CoO修饰全钒液流电池电极 | Journal of Energy Storage (IF=8.9) | 沈阳航空航天大学 卢少微&刘兴民 | 全钒 |
Core-shell Ni/NiO heterostructures as catalytic
cathodes enabling high-performance zinc bromine flow batteries 核壳结构Ni/NiO正极材料助力高性能锌溴液流电池 | Carbon Neutralization | 中科院北京纳米能源所 蒲雄 | 锌溴 |
Constructing high-performance fluoropoly(aryl
piperidinium) ion exchange membranes via side-chain engineering for efficient
vanadium flow batteries 通过侧链工程构建用于高效钒液流电池的高性能氟聚(芳基哌啶鎓)离子交换膜 | Journal of Membrane Science (IF=8.4) | 大连理工大学 朱秀玲&班涛 | 全钒 |
Screening Ultra-Stable (Phenazine)dioxyalkanocic
Acids with Varied Water-Solubilizing Chain Lengths for High-Capacity Aqueous
Redox Flow Batteries 超稳定吩嗪二氧烷酸的筛选及其在高容量水系液流电池中的应用 | Journal of the American Chemical Society (IF=14.5) | 南京大学 金钟&刘玉竹 | 有机 |
Bismuth nanoparticles anchored on N-doped
graphite felts to give stable and efficient iron-chromium redox
flow batteries 铋纳米颗粒负载的氮掺杂石墨毡用于稳定高效的铁铬液流电池 | New Carbon Mater (IF=6.6) | 北京化工大学 孙振宇 | 铁铬 |
Experimental Validation of Side Reaction on
Capacity Fade of Vanadium Redox Flow Battery 钒液流电池容量衰减副反应的实验验证 | J. Electrochem. Soc (IF=3.1) | 桂林电子科技大学 黄泽波 | 全钒 |
Highly ion selective sulfonated poly(ether ether
ketone)/polyzwitterion functionalized graphene oxides hybrid membrane for
vanadium redox flow battery 全钒氧化还原液流电池用高离子选择性磺化聚醚醚酮/多两性离子功能化氧化石墨烯杂化膜 | International Journal of Hydrogen Energy (IF=8.1) | 曲阜师范大学 张雨霞 | 全钒 |
A double-spiral flow channel of vanadium redox
flow batteries for updates Check for enhancing mass transfer and reducing
pressure drop 用于增强传质和降低压降的钒液流电池双螺旋流道 | Journal of Energy Storage (IF=8.9) | 吉林大学 曲大为&柴宇惟 | 全钒 |
Transforming liquid flow fuel cells to
controllable reactors for highly-efficient oxidation of
5-hydroxymethylfurfural to 2, 5-furandicarboxylic acid at low temperature 转化液流燃料电池为高效氧化HMF生产FDCA的可控反应器 | Journal of Energy Chemistry (IF=14) | 清华大学 赵雪冰&强也 |
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Liquid flow fuel cell with an electrodeposition-modified
nickel foam anode for efficient oxidation of 5-hydroxymethylfurfural to
produce 2, 5-furandicarboxylic acid with co-generation of electricity 使用电沉积修饰泡沫镍阳极用于高效FDCA和电能联产的液流燃料电池 | Chemical Engineering Journal (IF=13.4) | 清华大学 赵雪冰&强也 |
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Swinging Hydrogen Evolution to Nitrate Reduction
Activity in Molybdenum Carbide by Ruthenium Doping 钌掺杂对碳化钼硝酸盐还原活性的摆动析氢作用 | ACS Cataysis | 新加坡国立大学 陈仲欣 |
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Engineering Single Atom Catalysts for Flow
Production: From Catalyst Design to Reactor Understandings 用于流水线生产的单原子催化剂工程:从催化剂设计到反应器理解 | ACS Partner Journal Acctounts of materials
research | 新加坡国立大学 陈仲欣 |
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Strongly Coupled Ag/Sn–SnO2 Nanosheets
Toward CO2 Electroreduction to Pure HCOOH Solutions at Ampere‑Level
Current 强耦合的Ag/Sn–SnO2纳米片在安培级电流下将CO2还原为纯HCOOH溶液 | Nano-Micro Lett. (IF=31.6) | 重庆大学 周小元&张敏 |
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Self-Assembled Construction of Ion-Selective
Nanobarriers in Electrolyte Membranes for Redox Flow Batteries 用于氧化还原液流电池的自组装构建的离子选择性纳米屏障电解质膜 | Nano Letters (IF=9.6) | 吉林大学 李昊龙 | 全钒 |
Controllable oxidative depolymerization of
lignin to produce aromatic aldehydes and generate electricity under mild
conditions with direct biomass fuel cells as flexible reactors
| Chemical Engineering Journal (IF=13.4) | 清华大学 赵雪冰 |
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Design of a cobweb bionic flow field for organic
redox flow battery 一种氧化还原液流电池的蛛网仿生流道设计 | Journal of Power Sources (IF=8.1) | 北京化工大学 谭占鳌 | 有机 |
A sulfonated polyimide containing flexible
aliphatic segments with high chemical stability for vanadium redox flow
battery application 一种用于全钒液流电池含有具有高化学稳定性的柔性脂肪族段的磺化聚酰亚胺膜 | Journal of Power Sources (IF=8.1) | 四川大学 王瑞林&王刚 | 全钒 |
Suppression of the Hydrogen Evolution Reaction of
Iron-chromium Flow Batteries by Organic Compounds Containing the Imidazole
Group 含有咪唑基团的有机化合物对铁铬液流电池氢气演化反应的抑制作用 | Journal of Electroanalytical Chemistry (IF=4.1) | 中科院过程工程研究所张洋&邓逸涵 | 铁铬 |