Yuezhan Feng mainly investigates Electrochemistry, Composite material, Anode, Cathode and Lithium. The various areas that Yuezhan Feng examines in his Electrochemistry study include Metal chalcogenides and Nanostructure. Within one scientific family, Yuezhan Feng focuses on topics pertaining to Graphene under Composite material, and may sometimes address concerns connected to Thermal conductivity.
His Anode study combines topics from a wide range of disciplines, such as Electrocatalyst and Intercalation. His studies deal with areas such as Fast ion conductor, Ethylene glycol, Ionic conductivity, Photopolymer and Polymer chemistry as well as Lithium. His Polymer study incorporates themes from Nanofiber, Joule heating and Toughness.
Yuezhan Feng spends much of his time researching Anode, Composite material, Electrochemistry, Graphene and Energy storage. His Anode research is multidisciplinary, relying on both Intercalation, Nanoparticle, Porosity and Lithium. In his research, Alloy is intimately related to Electrolyte, which falls under the overarching field of Lithium.
When carried out as part of a general Composite material research project, his work on Thermal conductivity, Nanocomposite, Electromagnetic shielding and Electrical conductor is frequently linked to work in Interfacial thermal resistance, therefore connecting diverse disciplines of study. His Thermal conductivity study integrates concerns from other disciplines, such as Fire retardant, Ultimate tensile strength, Polymer, Epoxy and Thermal conduction. Yuezhan Feng works mostly in the field of Electrochemistry, limiting it down to concerns involving Doping and, occasionally, Thermal oxidation.
His primary areas of investigation include Anode, Electrochemistry, Energy storage, Composite material and Graphene. His study in Anode is interdisciplinary in nature, drawing from both Intercalation, Porosity and Lithium. His Electrochemistry research incorporates themes from Electrolyte, Nanoparticle, Ionic liquid and Photochemistry.
The Electromagnetic shielding, Thermal conductivity and Coating research Yuezhan Feng does as part of his general Composite material study is frequently linked to other disciplines of science, such as Electrical resistivity and conductivity and Impedance matching, therefore creating a link between diverse domains of science. Yuezhan Feng has included themes like Ball mill, Nanocomposite, Spinning, Polyvinyl alcohol and Thermal conduction in his Thermal conductivity study. His work deals with themes such as Compressive strength, Composite number, Electromagnetic wave absorption, Microstructure and Aerogel, which intersect with Graphene.
His scientific interests lie mostly in Anode, Electrochemistry, Electrical resistivity and conductivity, Composite material and Electromagnetic shielding. His Anode study combines topics in areas such as Particle size and Aqueous electrolyte. The various areas that Yuezhan Feng examines in his Electrochemistry study include Nickel sulfide and Charge carrier.
His Electrical conductor, Electrical resistance and conductance, Layer, Joule heating and Transparent conducting film investigations are all subjects of Composite material research. His Electrical conductor research includes elements of Ultimate tensile strength, Thermal conductivity and Toughness. His studies in Electromagnetic shielding integrate themes in fields like Transmittance, Nanoparticle, Coating and Graphene.
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Self-Supported and Flexible Sulfur Cathode Enabled via Synergistic Confinement for High-Energy-Density Lithium-Sulfur Batteries.
Zhuosen Wang;Jiadong Shen;Jun Liu;Jun Liu;Xijun Xu.
Advanced Materials (2019)
Flexible, Robust, and Multifunctional Electromagnetic Interference Shielding Film with Alternating Cellulose Nanofiber and MXene Layers.
Bing Zhou;Zhen Zhang;Yanli Li;Gaojie Han.
ACS Applied Materials & Interfaces (2020)
Sodium/Potassium-Ion Batteries: Boosting the Rate Capability and Cycle Life by Combining Morphology, Defect and Structure Engineering.
Huijuan Huang;Rui Xu;Yuezhan Feng;Sifan Zeng.
Advanced Materials (2020)
Simultaneous improvement in the flame resistance and thermal conductivity of epoxy/Al2O3 composites by incorporating polymeric flame retardant-functionalized graphene
Yuezhan Feng;Ji Hu;Yang Xue;Chengen He.
Journal of Materials Chemistry (2017)
Synergetic Improvement in Thermal Conductivity and Flame Retardancy of Epoxy/Silver Nanowires Composites by Incorporating "Branch-Like" Flame-Retardant Functionalized Graphene.
Yuezhan Feng;Xiongwei Li;Xiaoyu Zhao;Yunsheng Ye.
ACS Applied Materials & Interfaces (2018)
Improving thermal and flame retardant properties of epoxy resin by functionalized graphene containing phosphorous, nitrogen and silicon elements
Yuezhan Feng;Chengen He;Yingfeng Wen;Yunsheng Ye.
Composites Part A-applied Science and Manufacturing (2017)
Metal Chalcogenides: Paving the Way for High‐Performance Sodium/Potassium‐Ion Batteries
Huiteng Tan;Yuezhan Feng;Xianhong Rui;Xianhong Rui;Yan Yu;Yan Yu.
Small Methods (2020)
A Dual-Functional Conductive Framework Embedded with TiN-VN Heterostructures for Highly Efficient Polysulfide and Lithium Regulation toward Stable Li-S Full Batteries.
Yu Yao;Haiyun Wang;Hai Yang;Sifan Zeng.
Advanced Materials (2020)
Flexible MXene/Silver Nanowire-Based Transparent Conductive Film with Electromagnetic Interference Shielding and Electro-Photo-Thermal Performance.
Bing Zhou;Mengjie Su;Daozheng Yang;Gaojie Han.
ACS Applied Materials & Interfaces (2020)
Superior flame retardancy and smoke suppression of epoxy-based composites with phosphorus/nitrogen co-doped graphene.
Yuezhan Feng;Chengen He;Yingfeng Wen;Yunsheng Ye.
Journal of Hazardous Materials (2018)
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