Search Results - "Liu, Kun"

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  1. 1

    Wirtinger’s inequality and Lyapunov-based sampled-data stabilization by Liu, Kun, Fridman, Emilia

    Published in Automatica (Oxford) (2012)
    “…Discontinuous Lyapunov functionals appeared to be very efficient for sampled-data systems ( Fridman, 2010; Naghshtabrizi, Hespanha, & Teel, 2008). In the…”
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  2. 2

    Understanding the Reaction Chemistry during Charging in Aprotic Lithium–Oxygen Batteries: Existing Problems and Solutions by Shu, Chaozhu, Wang, Jiazhao, Long, Jianping, Liu, Hua‐Kun, Dou, Shi‐Xue

    Published in Advanced materials (Weinheim) (12-04-2019)
    “…The aprotic lithium–oxygen (Li–O2) battery has excited huge interest due to it having the highest theoretical energy density among the different types of…”
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  3. 3
  4. 4

    Dynamic Nutrient Signaling Networks in Plants by Li, Lei, Liu, Kun-hsiang, Sheen, Jen

    “…Nutrients are vital to life through intertwined sensing, signaling, and metabolic processes. Emerging research focuses on how distinct nutrient signaling…”
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  5. 5

    Reversible structural evolution of sodium-rich rhombohedral Prussian blue for sodium-ion batteries by Wang, Wanlin, Gang, Yong, Hu, Zhe, Yan, Zichao, Li, Weijie, Li, Yongcheng, Gu, Qin-Fen, Wang, Zhixing, Chou, Shu-Lei, Liu, Hua-Kun, Dou, Shi-Xue

    Published in Nature communications (20-02-2020)
    “…Iron-based Prussian blue analogs are promising low-cost and easily prepared cathode materials for sodium-ion batteries. Their materials quality and…”
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  6. 6

    Olefinic C-H functionalization through radical alkenylation by Tang, Shan, Liu, Kun, Liu, Chao, Lei, Aiwen

    Published in Chemical Society reviews (07-03-2015)
    “…Direct olefinic C-H functionalization represents the ideal way of introducing an alkenyl group into organic molecules. A well-known process is the Heck…”
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  7. 7

    Chemical Properties, Structural Properties, and Energy Storage Applications of Prussian Blue Analogues by Li, Wei‐Jie, Han, Chao, Cheng, Gang, Chou, Shu‐Lei, Liu, Hua‐Kun, Dou, Shi‐Xue

    “…Prussian blue analogues (PBAs, A2T[M(CN)6], A = Li, K, Na; T = Fe, Co, Ni, Mn, Cu, etc.; M = Fe, Mn, Co, etc.) are a large family of materials with an open…”
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  8. 8

    External oxidant-free electrooxidative [3 + 2] annulation between phenol and indole derivatives by Liu, Kun, Tang, Shan, Huang, Pengfei, Lei, Aiwen

    Published in Nature communications (03-10-2017)
    “…Intermolecular [3 + 2] annulation is one of the most straightforward approaches to construct five membered heterocycles. However, it generally requires the use…”
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  9. 9

    Sodium‐Ion Batteries: From Academic Research to Practical Commercialization by Deng, Jianqiu, Luo, Wen‐Bin, Chou, Shu‐Lei, Liu, Hua‐Kun, Dou, Shi‐Xue

    Published in Advanced energy materials (05-02-2018)
    “…Sodium‐ion batteries (SIBs) have been considered as the most promising candidate for large‐scale energy storage system owing to the economic efficiency…”
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  10. 10

    Research Progresses of Liquid Electrolytes in Lithium‐Ion Batteries by Liu, Yu‐Kun, Zhao, Chen‐Zi, Du, Juan, Zhang, Xue‐Qiang, Chen, Ai‐Bing, Zhang, Qiang

    “…In recent years, the rapid development of modern society is calling for advanced energy storage to meet the growing demands of energy supply and generation. As…”
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  11. 11

    Recent Progress on Fe‐Based Single/Dual‐Atom Catalysts for Zn–Air Batteries by Liu, Haoxuan, Yu, Fangfang, Wu, Kuan, Xu, Gang, Wu, Chao, Liu, Hua‐Kun, Dou, Shi‐Xue

    “…As one of the most competitive candidates for large‐scale energy storage, zinc–air batteries (ZABs) have attracted great attention due to their high…”
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  12. 12

    Atomic cobalt as an efficient electrocatalyst in sulfur cathodes for superior room-temperature sodium-sulfur batteries by Zhang, Bin-Wei, Sheng, Tian, Liu, Yun-Dan, Wang, Yun-Xiao, Zhang, Lei, Lai, Wei-Hong, Wang, Li, Yang, Jianping, Gu, Qin-Fen, Chou, Shu-Lei, Liu, Hua-Kun, Dou, Shi-Xue

    Published in Nature communications (04-10-2018)
    “…The low-cost room-temperature sodium-sulfur battery system is arousing extensive interest owing to its promise for large-scale applications. Although…”
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  13. 13

    Hard Carbon Anodes: Fundamental Understanding and Commercial Perspectives for Na‐Ion Batteries beyond Li‐Ion and K‐Ion Counterparts by Zhao, Ling‐Fei, Hu, Zhe, Lai, Wei‐Hong, Tao, Ying, Peng, Jian, Miao, Zong‐Cheng, Wang, Yun‐Xiao, Chou, Shu‐Lei, Liu, Hua‐Kun, Dou, Shi‐Xue

    Published in Advanced energy materials (01-01-2021)
    “…Hard carbon (HC) is recognized as a promising anode material with outstanding electrochemical performance for alkali metal‐ion batteries including lithium‐ion…”
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  14. 14

    Electron Delocalization and Dissolution‐Restraint in Vanadium Oxide Superlattices to Boost Electrochemical Performance of Aqueous Zinc‐Ion Batteries by Li, Weijie, Han, Chao, Gu, Qinfen, Chou, Shu‐Lei, Wang, Jia‐Zhao, Liu, Hua‐Kun, Dou, Shi‐Xue

    Published in Advanced energy materials (01-12-2020)
    “…Aqueous zinc‐ion batteries (ZIBs) have triggered a great deal of scientific research and become a promising alternative for large‐scale energy storage…”
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  15. 15

    Room‐Temperature Sodium‐Sulfur Batteries: A Comprehensive Review on Research Progress and Cell Chemistry by Wang, Yun‐Xiao, Zhang, Binwei, Lai, Weihong, Xu, Yanfei, Chou, Shu‐Lei, Liu, Hua‐Kun, Dou, Shi‐Xue

    Published in Advanced energy materials (20-12-2017)
    “…Room temperature sodium‐sulfur (RT‐Na/S) batteries have recently regained a great deal of attention due to their high theoretical energy density and low cost,…”
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  16. 16

    Lithium-Ion Conducting Electrolyte Salts for Lithium Batteries by Aravindan, Vanchiappan, Gnanaraj, Joe, Madhavi, Srinivasan, Liu, Hua-Kun

    Published in Chemistry : a European journal (16-12-2011)
    “…This paper presents an overview of the various types of lithium salts used to conduct Li+ ions in electrolyte solutions for lithium rechargeable batteries…”
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  17. 17

    Effect of Eliminating Water in Prussian Blue Cathode for Sodium‐Ion Batteries by Wang, Wanlin, Gang, Yong, Peng, Jian, Hu, Zhe, Yan, Zichao, Lai, Weihong, Zhu, Yanfang, Appadoo, Dominique, Ye, Mao, Cao, Yuliang, Gu, Qin‐Fen, Liu, Hua‐Kun, Dou, Shi‐Xue, Chou, Shu‐Lei

    Published in Advanced functional materials (01-06-2022)
    “…Prussian blue analogs (PBAs) are promising cathode materials for sodium‐ion batteries (SIBs) due to their low‐cost, similar energy density comparable with that…”
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  18. 18

    Dendrite‐Free Sodium Metal Anodes Enabled by a Sodium Benzenedithiolate‐Rich Protection Layer by Zhu, Ming, Wang, Guanyao, Liu, Xing, Guo, Bingkun, Xu, Gang, Huang, Zhongyi, Wu, Minghong, Liu, Hua‐Kun, Dou, Shi‐Xue, Wu, Chao

    Published in Angewandte Chemie International Edition (16-04-2020)
    “…Sodium metal is an ideal anode material for metal rechargeable batteries, owing to its high theoretical capacity (1166 mAh g−1), low cost, and earth‐abundance…”
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  19. 19

    NIN-like protein 7 transcription factor is a plant nitrate sensor by Liu, Kun-Hsiang, Liu, Menghong, Lin, Ziwei, Wang, Zi-Fu, Chen, Binqing, Liu, Cong, Guo, Aping, Konishi, Mineko, Yanagisawa, Shuichi, Wagner, Gerhard, Sheen, Jen

    “…Nitrate is an essential nutrient and signaling molecule for plant growth. Plants sense intracellular nitrate to adjust their metabolic and growth responses…”
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  20. 20

    Tunable Electrocatalytic Behavior of Sodiated MoS2 Active Sites toward Efficient Sulfur Redox Reactions in Room‐Temperature Na–S Batteries by Wang, Yanxia, Lai, Yangyang, Chu, Jun, Yan, Zichao, Wang, Yun‐Xiao, Chou, Shu‐Lei, Liu, Hua‐Kun, Dou, Shi Xue, Ai, Xinping, Yang, Hanxi, Cao, Yuliang

    Published in Advanced materials (Weinheim) (01-04-2021)
    “…Room‐temperature (RT) sodium–sulfur (Na–S) batteries hold great promise for large‐scale energy storage due to the advantages of high energy density, low cost,…”
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