Search Results - "Qiang Zhang"

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  1. 1

    Fluoroethylene Carbonate Additives to Render Uniform Li Deposits in Lithium Metal Batteries by Zhang, Xue‐Qiang, Cheng, Xin‐Bing, Chen, Xiang, Yan, Chong, Zhang, Qiang

    Published in Advanced functional materials (10-03-2017)
    “…Lithium (Li) metal has been considered as an important substitute for the graphite anode to further boost the energy density of Li‐ion batteries. However, Li…”
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    Journal Article
  2. 2

    Lithiophilic Sites in Doped Graphene Guide Uniform Lithium Nucleation for Dendrite‐Free Lithium Metal Anodes by Zhang, Rui, Chen, Xiao‐Ru, Chen, Xiang, Cheng, Xin‐Bing, Zhang, Xue‐Qiang, Yan, Chong, Zhang, Qiang

    Published in Angewandte Chemie International Edition (26-06-2017)
    “…Lithium (Li) metal is the most promising electrode for next‐generation rechargeable batteries. However, the challenges induced by Li dendrites on a working Li…”
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  3. 3

    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, Bo‐Quan, 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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  4. 4

    Lithium Nitrate Solvation Chemistry in Carbonate Electrolyte Sustains High‐Voltage Lithium Metal Batteries by Yan, Chong, Yao, Yu‐Xing, Chen, Xiang, Cheng, Xin‐Bing, Zhang, Xue‐Qiang, Huang, Jia‐Qi, Zhang, Qiang

    Published in Angewandte Chemie International Edition (22-10-2018)
    “…The lithium metal anode is regarded as a promising candidate in next‐generation energy storage devices. Lithium nitrate (LiNO3) is widely applied as an…”
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  5. 5

    Nanodiamonds suppress the growth of lithium dendrites by Cheng, Xin-Bing, Zhao, Meng-Qiang, Chen, Chi, Pentecost, Amanda, Maleski, Kathleen, Mathis, Tyler, Zhang, Xue-Qiang, Zhang, Qiang, Jiang, Jianjun, Gogotsi, Yury

    Published in Nature communications (25-08-2017)
    “…Lithium metal has been regarded as the future anode material for high-energy-density rechargeable batteries due to its favorable combination of negative…”
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  6. 6

    Nanocarbon for Oxygen Reduction Electrocatalysis: Dopants, Edges, and Defects by Tang, Cheng, Zhang, Qiang

    Published in Advanced materials (Weinheim) (01-04-2017)
    “…The oxygen reduction reaction (ORR) is the cornerstone of various sustainable energy‐conversion technologies. Metal‐free nanocarbon electrocatalysts with…”
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  7. 7

    A Sustainable Solid Electrolyte Interphase for High‐Energy‐Density Lithium Metal Batteries Under Practical Conditions by Zhang, Xue‐Qiang, Li, Tao, Li, Bo‐Quan, 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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  8. 8

    Design of superior phototheranostic agents guided by Jablonski diagrams by Feng, Guangxue, Zhang, Guo-Qiang, Ding, Dan

    Published in Chemical Society reviews (21-11-2020)
    “…Phototheranostics represents a promising direction for modern precision medicine, which has recently attracted great research interest from multidisciplinary…”
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  9. 9

    Mzion enables deep and precise identification of peptides in data-dependent acquisition proteomics by Zhang, Qiang

    Published in Scientific reports (29-04-2023)
    “…Sensitive and reliable identification of proteins and peptides pertains the basis of proteomics. We introduce Mzion, a new database search tool for…”
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  10. 10

    Advances in Interfaces between Li Metal Anode and Electrolyte by Zhang, Xue‐Qiang, Cheng, Xin‐Bing, Zhang, Qiang

    Published in Advanced materials interfaces (23-01-2018)
    “…Lithium metal has been considered as one of the most promising anode materials in high‐energy‐density rechargeable batteries due to its extremely high specific…”
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  11. 11

    Dual‐Phase Single‐Ion Pathway Interfaces for Robust Lithium Metal in Working Batteries by Xu, Rui, Xiao, Ye, Zhang, Rui, Cheng, Xin‐Bing, Zhao, Chen‐Zi, Zhang, Xue‐Qiang, Yan, Chong, Zhang, Qiang, Huang, Jia‐Qi

    Published in Advanced materials (Weinheim) (01-05-2019)
    “…The lithium (Li) metal anode is confronted by severe interfacial issues that strongly hinder its practical deployment. The unstable interfaces directly induce…”
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  12. 12

    Regulating Interfacial Chemistry in Lithium‐Ion Batteries by a Weakly Solvating Electrolyte by Yao, Yu‐Xing, Chen, Xiang, Yan, Chong, Zhang, Xue‐Qiang, Cai, Wen‐Long, Huang, Jia‐Qi, Zhang, Qiang

    Published in Angewandte Chemie International Edition (19-02-2021)
    “…The performance of Li‐ion batteries (LIBs) is highly dependent on their interfacial chemistry, which is regulated by electrolytes. Conventional electrolyte…”
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  13. 13

    Electrochemical Diagram of an Ultrathin Lithium Metal Anode in Pouch Cells by Shi, Peng, Cheng, Xin‐Bing, Li, Tao, Zhang, Rui, Liu, He, Yan, Chong, Zhang, Xue‐Qiang, Huang, Jia‐Qi, Zhang, Qiang

    Published in Advanced materials (Weinheim) (01-09-2019)
    “…Lithium (Li) metal is regarded as a “Holy Grail” electrode for next‐generation high‐energy‐density batteries. However, the electrochemical behavior of the Li…”
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  14. 14

    Columnar Lithium Metal Anodes by Zhang, Xue‐Qiang, Chen, Xiang, Xu, Rui, Cheng, Xin‐Bing, Peng, Hong‐Jie, Zhang, Rui, Huang, Jia‐Qi, Zhang, Qiang

    Published in Angewandte Chemie International Edition (06-11-2017)
    “…The rechargeable lithium metal anode is of utmost importance for high‐energy‐density batteries. Regulating the deposition/dissolution characteristics of Li…”
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  15. 15

    A Perspective toward Practical Lithium–Sulfur Batteries by Zhao, Meng, Li, Bo-Quan, Zhang, Xue-Qiang, Huang, Jia-Qi, Zhang, Qiang

    Published in ACS central science (22-07-2020)
    “…Lithium–sulfur (Li–S) batteries have long been expected to be a promising high-energy-density secondary battery system since their first prototype in the…”
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  16. 16

    Nanostructured energy materials for electrochemical energy conversion and storage: A review by Zhang, Xueqiang, Cheng, Xinbing, Zhang, Qiang

    Published in Journal of energy chemistry (01-11-2016)
    “…Nanostructured materials have received tremendous interest due to their unique mechanical/electrical properties and overall behavior contributed by the complex…”
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  17. 17

    Ion–Solvent Complexes Promote Gas Evolution from Electrolytes on a Sodium Metal Anode by Chen, Xiang, Shen, Xin, Li, Bo, Peng, Hong‐Jie, Cheng, Xin‐Bing, Li, Bo‐Quan, Zhang, Xue‐Qiang, Huang, Jia‐Qi, Zhang, Qiang

    Published in Angewandte Chemie International Edition (15-01-2018)
    “…Lithium and sodium metal batteries are considered as promising next‐generation energy storage devices due to their ultrahigh energy densities. The high…”
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  18. 18

    Dual‐Layered Film Protected Lithium Metal Anode to Enable Dendrite‐Free Lithium Deposition by Yan, Chong, Cheng, Xin‐Bing, Tian, Yang, Chen, Xiang, Zhang, Xue‐Qiang, Li, Wen‐Jun, Huang, Jia‐Qi, Zhang, Qiang

    Published in Advanced materials (Weinheim) (20-06-2018)
    “…Lithium metal batteries (such as lithium–sulfur, lithium–air, solid state batteries with lithium metal anode) are highly considered as promising candidates for…”
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  19. 19

    A Review of Electrocatalytic Reduction of Dinitrogen to Ammonia under Ambient Conditions by Cui, Xiaoyang, Tang, Cheng, Zhang, Qiang

    Published in Advanced energy materials (06-08-2018)
    “…The production of ammonia (NH3) from molecular dinitrogen (N2) under mild conditions is one of the most attractive topics in the field of chemistry…”
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  20. 20

    Solvation effects on DFT predictions of ORR activity on metal surfaces by Zhang, Qiang, Asthagiri, Aravind

    Published in Catalysis today (15-02-2019)
    “…[Display omitted] •Continuum solvation fails to predict oxygen reduction onset potential on Pt (111).•Main issue is an underestimation of OH solvation…”
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