Search Results - "Wang, Kai‐Xue"

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  1. 1

    Surface and Interface Engineering of Electrode Materials for Lithium-Ion Batteries by Wang, Kai-Xue, Li, Xin-Hao, Chen, Jie-Sheng

    Published in Advanced materials (Weinheim) (21-01-2015)
    “…Lithium‐ion batteries are regarded as promising energy storage devices for next‐generation electric and hybrid electric vehicles. In order to meet the demands…”
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  2. 2

    Strategies toward High‐Performance Cathode Materials for Lithium–Oxygen Batteries by Wang, KaiXue, Zhu, Qian‐Cheng, Chen, Jie‐Sheng

    “…Rechargeable aprotic lithium (Li)–O2 batteries with high theoretical energy densities are regarded as promising next‐generation energy storage devices and have…”
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  3. 3

    Extended Structures and Physicochemical Properties of Uranyl–Organic Compounds by Wang, Kai-Xue, Chen, Jie-Sheng

    Published in Accounts of chemical research (19-07-2011)
    “…The ability of uranium to undergo nuclear fission has been exploited primarily to manufacture nuclear weapons and to generate nuclear power. Outside of its…”
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  4. 4

    Toward Hydrogen‐Free and Dendrite‐Free Aqueous Zinc Batteries: Formation of Zincophilic Protective Layer on Zn Anodes by Hong, Lin, Wang, Liang‐Yu, Wang, Yuling, Wu, Xiuming, Huang, Wei, Zhou, Yongfeng, Wang, KaiXue, Chen, Jie‐Sheng

    Published in Advanced science (01-02-2022)
    “…Rechargeable aqueous Zn‐ion batteries (ZIBs) are regarded as one of the most promising devices for the next‐generation energy storage system. However, the…”
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  5. 5

    Surface Binding of Polypyrrole on Porous Silicon Hollow Nanospheres for Li-Ion Battery Anodes with High Structure Stability by Du, Fei-Hu, Li, Bo, Fu, Wei, Xiong, Yi-Jun, Wang, Kai-Xue, Chen, Jie-Sheng

    Published in Advanced materials (Weinheim) (17-09-2014)
    “…Uniform porous silicon hollow nano­spheres are prepared without any sacrificial templates through a magnesio­thermic reduction of mesoporous silica hollow…”
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  6. 6

    Non‐Conjugated Dicarboxylate Anode Materials for Electrochemical Cells by Ma, Chao, Zhao, Xiaolin, Kang, Litao, Wang, KaiXue, Chen, Jie‐Sheng, Zhang, Wenqing, Liu, Jianjun

    Published in Angewandte Chemie International Edition (16-07-2018)
    “…Classical organic anode materials for Na‐ion batteries are mostly based on conjugated carboxylate compounds, which can stabilize added electrons by the…”
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  7. 7

    Highly Efficient Dehydrogenation of Formic Acid over a Palladium-Nanoparticle-Based Mott-Schottky Photocatalyst by Cai, Yi-Yu, Li, Xin-Hao, Zhang, Ya-Nan, Wei, Xiao, Wang, Kai-Xue, Chen, Jie-Sheng

    Published in Angewandte Chemie International Edition (04-11-2013)
    “…Exploiting useful contacts: The exceptional catalytic performance of a photocatalyst composed of Pd nanoparticles and mesoporous carbon nitride for the…”
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  8. 8

    Multistaged discharge constructing heterostructure with enhanced solid-solution behavior for long-life lithium-oxygen batteries by Xu, Shu-Mao, Liang, Xiao, Wu, Xue-Yan, Zhao, Shen-Long, Chen, Jun, Wang, Kai-Xue, Chen, Jie-Sheng

    Published in Nature communications (20-12-2019)
    “…Inferior charge transport in insulating and bulk discharge products is one of the main factors resulting in poor cycling stability of lithium–oxygen batteries…”
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  9. 9

    Self‐Adapting and Self‐Healing Hydrogel Interface with Fast Zn2+ Transport Kinetics for Highly Reversible Zn Anodes by Hong, Lin, Wu, Xiuming, Liu, Yu‐Si, Yu, Chunyang, Liu, Yingchun, Sun, Kaixi, Shen, Chenyang, Huang, Wei, Zhou, Yongfeng, Chen, Jie‐Sheng, Wang, KaiXue

    Published in Advanced functional materials (01-07-2023)
    “…Construction of polymer‐based artificial solid‐electrolyte interphase films on Zn metal anode holds great potential in the suppression of both dendrite growth…”
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  10. 10

    Enhanced Electrochemical Performance of Aprotic Li‐CO2 Batteries with a Ruthenium‐Complex‐Based Mobile Catalyst by Zhang, Zhen, Bai, Wen‐Long, Cai, Zhi‐Peng, Cheng, Jin‐Huan, Kuang, Hua‐Yi, Dong, Bo‐Xu, Wang, Yu‐Bo, Wang, KaiXue, Chen, Jie‐Sheng

    Published in Angewandte Chemie International Edition (19-07-2021)
    “…Li‐CO2 batteries are regarded as next‐generation high‐energy‐density electrochemical devices. However, the greatest challenge arises from the formation of the…”
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  11. 11

    MoO2/Mo2C Heteronanotubes Function as High-Performance Li-Ion Battery Electrode by Zhang, Hao-Jie, Wang, Kai-Xue, Wu, Xue-Yan, Jiang, Yan-Mei, Zhai, Yu-Bo, Wang, Cheng, Wei, Xiao, Chen, Jie-Sheng

    Published in Advanced functional materials (11-06-2014)
    “…Instead of carbon, Mo2C is used to modify the MoO2 material for the first time. The presence of highly conductive and electrochemical inactive Mo2C decreases…”
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  12. 12

    Free‐Standing Air Cathodes Based on 3D Hierarchically Porous Carbon Membranes: Kinetic Overpotential of Continuous Macropores in Li‐O2 Batteries by Xu, Shu‐Mao, Liang, Xiao, Ren, Zhi‐Chu, Wang, KaiXue, Chen, Jie‐Sheng

    Published in Angewandte Chemie International Edition (04-06-2018)
    “…Free‐standing macroporous air electrodes with enhanced interfacial contact, rapid mass transport, and tailored deposition space for large amounts of Li2O2 are…”
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  13. 13

    Biomass‐Derived Carbon Materials for Electrochemical Energy Storage by Bai, Yu‐Lin, Zhang, Chen‐Chen, Rong, Feng, Guo, Zhao‐Xia, Wang, KaiXue

    Published in Chemistry : a European journal (22-04-2024)
    “…The environmental impact from the waste disposal has been widely concerned around the world. The conversion of wastes to useful resources is important for the…”
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  14. 14

    A Composite of Carbon-Wrapped Mo2C Nanoparticle and Carbon Nanotube Formed Directly on Ni Foam as a High-Performance Binder-Free Cathode for Li-O2 Batteries by Zhu, Qian-Cheng, Xu, Shu-Mao, Harris, Michelle M., Ma, Chao, Liu, Yu-Si, Wei, Xiao, Xu, Hua-Sheng, Zhou, Yong-Xian, Cao, Yu-Cai, Wang, Kai-Xue, Chen, Jie-Sheng

    Published in Advanced functional materials (13-12-2016)
    “…Cathode design is indispensable for building Li‐O2 batteries with long cycle life. A composite of carbon‐wrapped Mo2C nanoparticles and carbon nanotubes is…”
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  15. 15

    Tailoring the Growth and Morphology of Lithium Peroxide: Nickel Sulfide/Nickel Phosphate Nanotubes with Optimized Electronic Structure for Lithium–Oxygen Batteries by Li, Se‐Si, Liu, Yu‐Si, Wu, Xue‐Yan, Wang, KaiXue, Chen, Jie‐Sheng

    “…Heterogeneous crystalline‐amorphous structures, with tunable electronic structures and morphology, hold immense promise as catalysts for lithium‐oxygen…”
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  16. 16

    Targeting Liver Sinusoidal Endothelial Cells: An Attractive Therapeutic Strategy to Control Inflammation in Nonalcoholic Fatty Liver Disease by Wang, Xue-Kai, Peng, Zong-Gen

    Published in Frontiers in pharmacology (15-04-2021)
    “…Nonalcoholic fatty liver disease (NAFLD), especially its advanced stage nonalcoholic steatohepatitis (NASH), has become a threatened public health problem…”
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  17. 17

    Boosting Potassium Storage Capacity Based on Stress‐Induced Size‐Dependent Solid‐Solution Behavior by Xu, Shu‐Mao, Ding, Ying‐Chun, Liu, Xin, Zhang, Qiang, Wang, KaiXue, Chen, Jie‐Sheng

    Published in Advanced energy materials (15-11-2018)
    “…A prerequisite for successful development of a K‐ion battery anode based on solid‐solution behavior is to improve its potassium storage capacity. Increasing…”
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  18. 18

    Construction of Large Non‐Localized π‐Electron System for Enhanced Sodium‐Ion Storage by Wang, Liang‐Yu, Ma, Chao, Hou, Cheng‐Cheng, Wei, Xiao, Wang, KaiXue, Chen, Jie‐Sheng

    “…Organic electrode materials with the advantages of renewability, environment‐friendliness, low cost, and high capacity have received widespread attention in…”
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  19. 19
  20. 20

    Nitrogen-doped graphene microtubes with opened inner voids: Highly efficient metal-free electrocatalysts for alkaline hydrogen evolution reaction by Zhang, Bing, Wang, Hong-Hui, Su, Hui, Lv, Li-Bing, Zhao, Tian-Jian, Ge, Jie-Min, Wei, Xiao, Wang, Kai-Xue, Li, Xin-Hao, Chen, Jie-Sheng

    Published in Nano research (01-09-2016)
    “…A facile method was developed to fabricate nitrogen-doped graphene microtubes (N-GMT) with ultra-thin walls of 1–4 nm and large inner voids of 1–2 μm. The…”
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