Search Results - "Li, Bo‐Quan"

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  1. 1

    Intrinsic Electrocatalytic Activity Regulation of M–N–C Single‐Atom Catalysts for the Oxygen Reduction Reaction by Zhao, Chang‐Xin, Li, BoQuan, Liu, Jia‐Ning, Zhang, Qiang

    Published in Angewandte Chemie International Edition (23-02-2021)
    “…Single‐atom catalysts (SACs) with highly active sites atomically dispersed on substrates exhibit unique advantages regarding maximum atomic efficiency,…”
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  2. 2

    An Organodiselenide Comediator to Facilitate Sulfur Redox Kinetics in Lithium–Sulfur Batteries by Zhao, Meng, Chen, Xiang, Li, Xi‐Yao, Li, BoQuan, Huang, Jia‐Qi

    Published in Advanced materials (Weinheim) (01-04-2021)
    “…Lithium–sulfur (Li–S) batteries are considered as promising next‐generation energy storage devices due to their ultrahigh theoretical energy density, where…”
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  3. 3

    Bifunctional Transition Metal Hydroxysulfides: Room‐Temperature Sulfurization and Their Applications in Zn–Air Batteries by Wang, Hao‐Fan, Tang, Cheng, Wang, Bin, Li, BoQuan, Zhang, Qiang

    Published in Advanced materials (Weinheim) (01-09-2017)
    “…Bifunctional electrocatalysis for oxygen evolution reaction (OER) and oxygen reduction reaction (ORR) constitutes the bottleneck of various sustainable energy…”
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  4. 4

    Electrosynthesis of Hydrogen Peroxide Synergistically Catalyzed by Atomic Co–Nx–C Sites and Oxygen Functional Groups in Noble‐Metal‐Free Electrocatalysts by Li, BoQuan, Zhao, Chang‐Xin, Liu, Jia‐Ning, Zhang, Qiang

    Published in Advanced materials (Weinheim) (01-08-2019)
    “…Hydrogen peroxide (H2O2) is a green oxidizer widely involved in a vast number of chemical reactions. Electrochemical reduction of oxygen to H2O2 constitutes an…”
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  5. 5

    Lithium–Sulfur Batteries under Lean Electrolyte Conditions: Challenges and Opportunities by Zhao, Meng, Li, BoQuan, Peng, Hong‐Jie, Yuan, Hong, Wei, Jun‐Yu, Huang, Jia‐Qi

    Published in Angewandte Chemie International Edition (27-07-2020)
    “…The development of energy‐storage devices has received increasing attention as a transformative technology to realize a low‐carbon economy and sustainable…”
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  6. 6

    Highly Stable Lithium Metal Batteries Enabled by Regulating the Solvation of Lithium Ions in Nonaqueous Electrolytes by Zhang, Xue‐Qiang, Chen, Xiang, Cheng, Xin‐Bing, Li, BoQuan, Shen, Xin, Yan, Chong, Huang, Jia‐Qi, Zhang, Qiang

    Published in Angewandte Chemie International Edition (04-05-2018)
    “…Safe and rechargeable lithium metal batteries have been difficult to achieve because of the formation of lithium dendrites. Herein an emerging electrolyte…”
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  7. 7

    Toward Critical Electrode/Electrolyte Interfaces in Rechargeable Batteries by Yan, Chong, Xu, Rui, Xiao, Ye, Ding, Jun‐Fan, Xu, Lei, Li, BoQuan, Huang, Jia‐Qi

    Published in Advanced functional materials (01-06-2020)
    “…The electrode/electrolyte interface plays a critical role in stabilizing the cycling performance and prolonging the service life of rechargeable batteries to…”
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  8. 8

    Dilute Alloying to Implant Activation Centers in Nitride Electrocatalysts for Lithium–Sulfur Batteries by Liu, Quanbing, Wu, Yujie, Li, Dong, Peng, Yan‐Qi, Liu, Xinyan, Li, BoQuan, Huang, Jia‐Qi, Peng, Hong‐Jie

    Published in Advanced materials (Weinheim) (01-02-2023)
    “…Dilute alloying is an effective strategy to tune properties of solid catalysts but is rarely leveraged in complex reactions beyond small molecule conversion…”
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  9. 9

    Toward Practical High‐Energy‐Density Lithium–Sulfur Pouch Cells: A Review by Chen, Zi‐Xian, Zhao, Meng, Hou, Li‐Peng, Zhang, Xue‐Qiang, Li, BoQuan, Huang, Jia‐Qi

    Published in Advanced materials (Weinheim) (01-09-2022)
    “…Lithium–sulfur (Li–S) batteries promise great potential as high‐energy‐density energy‐storage devices due to their ultrahigh theoretical energy density of…”
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  10. 10

    Implanting Atomic Cobalt within Mesoporous Carbon toward Highly Stable Lithium–Sulfur Batteries by Xie, Jin, Li, BoQuan, Peng, Hong‐Jie, Song, Yun‐Wei, Zhao, Meng, Chen, Xiao, Zhang, Qiang, Huang, Jia‐Qi

    Published in Advanced materials (Weinheim) (01-10-2019)
    “…Lithium–sulfur (Li–S) batteries hold great promise to serve as next‐generation energy storage devices. However, the practical performances of Li–S batteries…”
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  11. 11

    A ΔE = 0.63 V Bifunctional Oxygen Electrocatalyst Enables High‐Rate and Long‐Cycling Zinc–Air Batteries by Zhao, Chang‐Xin, Liu, Jia‐Ning, Wang, Juan, Ren, Ding, Yu, Jia, Chen, Xiao, Li, BoQuan, Zhang, Qiang

    Published in Advanced materials (Weinheim) (01-04-2021)
    “…Rechargeable zinc–air batteries constitute promising next‐generation energy storage devices due to their intrinsic safety, low cost, and feasibility to realize…”
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  12. 12

    Conductive and Catalytic Triple‐Phase Interfaces Enabling Uniform Nucleation in High‐Rate Lithium–Sulfur Batteries by Yuan, Hong, Peng, Hong‐Jie, Li, BoQuan, Xie, Jin, Kong, Long, Zhao, Meng, Chen, Xiao, Huang, Jia‐Qi, Zhang, Qiang

    Published in Advanced energy materials (03-01-2019)
    “…Rechargeable lithium–sulfur batteries have attracted tremendous scientific attention owing to their superior energy density. However, the sulfur…”
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  13. 13

    Framework‐Porphyrin‐Derived Single‐Atom Bifunctional Oxygen Electrocatalysts and their Applications in Zn–Air Batteries by Li, BoQuan, Zhao, Chang‐Xin, Chen, Shuangming, Liu, Jia‐Ning, Chen, Xiao, Song, Li, Zhang, Qiang

    Published in Advanced materials (Weinheim) (01-05-2019)
    “…High‐performance bifunctional oxygen electrocatalysis constitutes the key technique for the widespread application of clean and sustainable energy through…”
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  14. 14

    A Sustainable Solid Electrolyte Interphase for High‐Energy‐Density Lithium Metal Batteries Under Practical Conditions by Zhang, Xue‐Qiang, Li, Tao, Li, BoQuan, Zhang, Rui, Shi, Peng, Yan, Chong, Huang, Jia‐Qi, Zhang, Qiang

    Published in Angewandte Chemie International Edition (17-02-2020)
    “…High‐energy‐density Li metal batteries suffer from a short lifespan under practical conditions, such as limited lithium, high loading cathode, and lean…”
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  15. 15

    Asymmetric Air Cathode Design for Enhanced Interfacial Electrocatalytic Reactions in High‐Performance Zinc–Air Batteries by Yu, Jia, Li, BoQuan, Zhao, Chang‐Xin, Liu, Jia‐Ning, Zhang, Qiang

    Published in Advanced materials (Weinheim) (01-03-2020)
    “…The rechargeable zinc–air battery (ZAB) is a promising energy storage technology owing to its high energy density and safe aqueous electrolyte, but there is a…”
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  16. 16

    Electrochemical Phase Evolution of Metal‐Based Pre‐Catalysts for High‐Rate Polysulfide Conversion by Zhao, Meng, Peng, Hong‐Jie, Li, BoQuan, Chen, Xiao, Xie, Jin, Liu, Xinyan, Zhang, Qiang, Huang, Jia‐Qi

    Published in Angewandte Chemie International Edition (02-06-2020)
    “…In situ evolution of electrocatalysts is of paramount importance in defining catalytic reactions. Catalysts for aprotic electrochemistry such as lithium–sulfur…”
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  17. 17

    An Armored Mixed Conductor Interphase on a Dendrite‐Free Lithium‐Metal Anode by Yan, Chong, Cheng, Xin‐Bing, Yao, Yu‐Xing, Shen, Xin, Li, BoQuan, Li, Wen‐Jun, Zhang, Rui, Huang, Jia‐Qi, Li, Hong, Zhang, Qiang

    Published in Advanced materials (Weinheim) (01-11-2018)
    “…Lithium‐metal electrodes have undergone a comprehensive renaissance to meet the requirements of high‐energy‐density batteries due to their lowest electrode…”
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  18. 18

    Anionic Regulated NiFe (Oxy)Sulfide Electrocatalysts for Water Oxidation by Li, BoQuan, Zhang, Shu‐Yuan, Tang, Cheng, Cui, Xiaoyang, Zhang, Qiang

    “…The construction of active sites with intrinsic oxygen evolution reaction (OER) is of great significance to overcome the limited efficiency of abundant…”
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  19. 19

    Taming Solvent–Solute Interaction Accelerates Interfacial Kinetics in Low‐Temperature Lithium‐Metal Batteries by Jin, Cheng‐Bin, Yao, Nan, Xiao, Ye, Xie, Jin, Li, Zeheng, Chen, Xiang, Li, BoQuan, Zhang, Xue‐Qiang, Huang, Jia‐Qi, Zhang, Qiang

    Published in Advanced materials (Weinheim) (01-01-2023)
    “…Lithium (Li)‐metal batteries promise energy density beyond 400 Wh kg−1, while their practical operation at an extreme temperature below −30 °C suffers severe…”
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  20. 20

    Activating Inert Metallic Compounds for High‐Rate Lithium–Sulfur Batteries Through In Situ Etching of Extrinsic Metal by Zhao, Meng, Peng, Hong‐Jie, Zhang, Ze‐Wen, Li, BoQuan, Chen, Xiao, Xie, Jin, Chen, Xiang, Wei, Jun‐Yu, Zhang, Qiang, Huang, Jia‐Qi

    Published in Angewandte Chemie International Edition (18-03-2019)
    “…Surface reactions constitute the foundation of various energy conversion/storage technologies, such as the lithium–sulfur (Li‐S) batteries. To expedite surface…”
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