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| 1 | γ-MnO2 nanorods/graphene composite as efficient cathode for advanced rechargeable aqueous zinc-ion battery显示文摘Aqueous Zn//MnO2 batteries are emerging as promising large-scale energy storage devices owing to their cost-effectiveness,high safety,high output voltage,and energy density.However,the MnO2 cathode suffers from intrinsically poor rate performance and rapid capacity deterioration.Here,we remove the roadblock by compositing MnO2 nanorods with highly conductive graphene,which remarkably enhances the electrochemical properties of the MnO2 cathode.Benefiting from the boosted electric conductivity and ion diffusion rate as well as the structural protection of graphene,the Zn//MnO2-graphene battery presents an admirable capacity of 301 mAh g^-1 at 0.5 A g^-1,corresponding to a high energy density of 411.6 Wh kg^-1.Even at a high current density of 10 A g^-1,a decent capacity of 95.8 mAh g^-1 is still obtained,manifesting its excellent rate property.Furthermore,an impressive power density of 15 kW kg^-1 is achieved by the Zn//MnO2-graphene battery. | Chao Wang Yinxiang Zeng Xiang Xiao Shijia Wu Guobin Zhong Kaiqi Xu Zengfu Wei Wei Su Xihong Lu | 2020 | Journal of Energy Chemistry2020,29,4: | 13 |
| 2 | Enhanced electromagnetic-interference shielding effectiveness and mechanical strength of Co-Ni coated aramid-carbon blended fabric显示文摘An efficient method was proposed to prepare high-performance conductive AramidCarbon Blend Fabrics(ACBF)with cobalt-nickel(Co-Ni)alloy coatings,which is conducive to industrial production.The grid-like substrate composed of aramid and carbon fibers was innovatively used in flexible Electromagnetic Interference(EMI)shielding materials.The natural network structure is advantageous to the uniform deposition of metal particles to the establishment of conductive pathways subsequently in order to improve conductivity.The induction of a synergistic effect from Electromagnetic(EM)wave-reflection and EM wave-absorption through the whole carbonCo-Ni-ternary system notably enhanced the EMI Shielding Effectiveness(SE)value to an average of 42.57 d B in the range of 30-6000 MHz.On the other hand,together with the inherent toughness of the alloy coatings,the tensile strength of the aramid fibers used for bulletproof made a significant contribution to the desired mechanical properties.The light weight of the resultant composite made it applicable to aerospace vehicles simultaneously.X-ray Photoelectron Spectroscopy(XPS)was conducted to investigate the variations of elements and groups on the sample surface in pretreating process.The elemental components and surface morphologies of fabric samples during different stages of the process were investigated by Scanning Electron Microscope(SEM)and Energy Dispersive spectrometer(EDX)measurements.X-Ray Diffraction(XRD)results indicated that the obtained Co-Ni alloy coating had a combined Hexagonal Closed-Packed(HCP)and FacedCentered Cubic(FCC)crystalline phase.The relatively high corrosion resistance demonstrated in different acid and alkaline conditions was instrumental in more complex environments as well. | Qin WANG Yumeng XU Siyi BI Yinxiang LU | 2021 | Chinese Journal of Aeronautics2021,34,10: | 6 |
| 3 | Flexible rechargeable Ni//Zn battery based on self-supported NiCo_2O_4 nanosheets with high power density and good cycling stability显示文摘The overall electrochemical performances of Ni-Zn batteries are still far from satisfactory, specifically for rate performance and cycling stability Herein, we demonstrated a high-performance flexible Ni//Zn battery with outstanding durability and high power density based on selfsupported NiCo_2 O_4 nanosheets as cathode and Zn nanosheets as anode. This Ni//Zn battery is able to deliver a remarkable capacity of183.1 mAh g^(-1) and a good cycling performance(82.7% capacity retention after 3500 cycles). More importantly, this battery achieves an admirable power density of 49.0 kW kg^(-1) and energy density of 303.8 Wh kg^(-1), substantially higher than most recently reported batteries. With such excellent electrochemical performance, this battery will have great potential as an ultrafast power source in practical application. | Haozhe Zhang Xinyue Zhang Haodong Li Yifeng Zhang Yinxiang Zeng Yexiang Tong Peng Zhang Xihong Lu | 2018 | Green Energy & Environment2018,3,1: | 5 |
| 4 | Preparation of CF/Ni-Fe/CNT/silicone layered rubber for aircraft sealing and electromagnetic interference shielding applications显示文摘To meet the needs of preventing information leakage in space engineering and military industry,an efficient method was introduced to obtain layered electromagnetic shielding sealing rubber.The carbon fiber,Ni-Fe coating,and Carbon Nano Tube(CNT)were combined by chemical plating and in-situ polymerization to obtain a lightweight(0.14 g/cm^(2))and thin(1 mm thick)Carbon fiber Fabric(CF)/Ni-Fe/CNT/silicone layered electromagnetic shielding composites.The layered material obtained by adjusting the electroless plating time exhibited a high Shielding Efficiency(SE)of 60.2–85.5 d B in the range of 0–4800 MHz,which can be used for aviation electromagnetic shielding.Carbon fibers and carbon nanotubes mainly attenuated electromagnetic waves through absorption loss,while the nickel-iron alloy coating through reflection loss interacted with the magnetic vector of incident Electro Magnetic(EM)radiation and magnetic dipoles,therefore,the EM Interference(EMI)shielding composite attenuated EM waves with the“absorptionreflection-absorption”cooperative interaction.Moreover,the flexible fabric substrate adhered with silicone rubber possessed a breaking elongation of 52.3%,which can be utilized as a good sealing material.Simultaneously,the outstanding exothermicity(67.2℃ under the applied voltage of 5 V)makes it possible to be applied in electric heating area.The electromagnetic shielding composites prepared in this paper have good potential in the fields of precision electronic equipment and aviation systems. | Wanying LUAN Qin WANG Qi SUN Yinxiang LU | 2021 | Chinese Journal of Aeronautics2021,34,10: | 3 |
| 5 | Palladium-free catalytic electroless copper deposition on bamboo fabric: Preparation, morphology and electromagnetic properties显示文摘 | Yinxiang Lu Qian Liang Longlong Xue | 2012 | Applied Surface Science2012,,10: | 2 |
| 6 | Ultrasonic-assisted electroless deposition of Ag on PET fabric with low silver content for EMI shielding显示文摘 | Yinxiang Lu Suhua Jiang Yongming Huang | 2010 | Surface & Coatings Technology2010,,16: | 1 |
| 7 | Palladium-free catalytic electroless copper deposition on bamboo fabric: Preparation, morphology and electromagnetic properties显示文摘 | Lu Yinxiang Liang Qian Xue Longlong | 2012 | Applied Surface Science2012,258,10: | 1 |
| 8 | Ultrasonic-assisted electroless deposition of Ag on PET fabric with low silver content for EMI shielding显示文摘 | Lu Yinxiang Jiang Suhua Huang Yongming | 2010 | Surface & Coatings Technology2010,,: | 1 |
| 9 | Silver nanoparticle catalyst for electroless Ni deposition and the promotion of its adsorption onto PET substrate 显示文摘 | Lu Yinxiang Xue Longlong Li Feng | 2010 | Surface & Coatings Technology2010,205,2: | 1 |
| 10 | Eleetrolessnickel deposition on silane modified bamboo fabric through silver, copper or nickel activation 显示文摘 | LU Yinxiang LIANG Qian XUE Longlong | 2012 | Surface & Coatings Technology2012,206,: | 1 |
| 11 | Electromagnetic interfer- ence shielding, mechanical properties and water absorp- tion of copper/bamboo fabric (Cu/BF) composites 显示文摘 | LU Yinxiang XUE Longlong | 2012 | Composites Science and Technology2012,72,: | 1 |
| 12 | Ultrasonicassisted electroless deposition of Ag on PET fabric with low silver content for EMI shielding显示文摘 | Lu Yinxiang Jiang Suhua Huang Yongming | 2010 | Surf Coat Techn2010,24,1617: | 1 |
| 13 | Electroless copper plating on 3-mercaptopropyltriethoxysilane modified PET fabric challenged by ultrasonic washing显示文摘 | Lu Yinxiang | 2009 | Appl Surf Sci2009,255,20: | 1 |
| 14 | Improvement of copper plating adhesion on silane modified PET film by ultrasonic-assisted electroless deposition显示文摘 | Yinxiang Lu | 2009 | Applied Surface Science2009,,11: | 1 |
| 15 | Ultrasonic-assisted electroless deposition of Ag on PET fabric with low silver content for EMI shielding显示文摘 | Yinxiang Lu Suhua Jiang Yongming Huang | 2010 | Surface & Coatings Technology2010,,16: | 1 |
| 16 | Oxygen‐Deficient Hematite Nanorods as High‐Performance and Novel Negative Electrodes for Flexible Asymmetric Supercapacitors显示文摘 | Xihong Lu Yinxiang Zeng Minghao Yu Teng Zhai Chaolun Liang Shilei Xie Muhammad‐Sadeeq Balogun Yexiang Tong | 2014 | Adv. Mater2014,,19: | 1 |
| 17 | Electromagnetic interference shielding mechanical properties and water absorption of copper/bamboo(Cu/BF) composite显示文摘 | Yinxiang Lu Longlong Xue | 2012 | Composites Sci ence and Technology2012,,72: | 1 |
| 18 | Electroless Copper Plating on 3-Mercaptopropyhriethoxysilane Modified PET Fabric Challenged by Ultrasonic Washing显示文摘 | Lu Yinxiang | 2009 | Applied Surface Science2009,255,20: | 1 |
| 19 | Electroless copper plating on 3-mercaptopropyltriethoxysilane modified PET fabric challenged by ultrasonic washing 显示文摘 | LU Yinxiang | 2009 | Applied Surface Science2009,255,: | 1 |
| 20 | Improvement of copper plating adhesion on si- lane modified PET film by ultrasonic-assisted electroless deposition 显示文摘 | Lu Yinxiang | 2010 | Applied Surface Science2010,,256: | 1 |