Showing 281 - 300 results of 3,647 for search '((pinn OR (((pine OR (pinnae OR pinnau)) OR pinned) OR ling)) OR (((ins OR ion) OR peng) OR link))', query time: 0.24s Refine Results
  1. 281

    A random-key genetic algorithm-based method for transportation network vulnerability envelope analysis under simultaneous multi-link disruptions by Gu, Y, Ryu, S, Xu, Y, Chen, A, Chan, H-Y, Xu, X

    Published 2024
    “…This study aims to develop an efficient method based on the random key genetic algorithm (RKGA) for determining the TNVE under simultaneous multi-link disruptions. The main features and benefits of the proposed method include: (a) it simultaneously solves the upper- and lower-bound problems at the same time while guaranteeing the feasibility of all solutions in the solution procedure; (b) it improves the computational efficiency to ensure the applicability to real transportation networks; and (c) it can provide a variety of alternative solutions in addition to the single optimal one, which facilitates the derivation of TNVE buffer and identification of sub-important links. …”
    Journal article
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    Exploring two dimensional Co0.33In2.67S2.29Se1.71 as alloy type negative electrode for Li-ion battery with olivine LiFePO4 cathode by Chaturvedi, Apoorva, Morris, Samuel Alexander, Hu, Peng, Long, Yi, Kloc, Christian, Duchamp, Martial, Madhavi, Srinivasan, Aravindan, Vanchiappan

    Published 2020
    “…We report the synthesis and Li-storage properties of two-dimensional Co0.33In2.67S2.29Se1.71 as an anode for Li-ion battery applications. Chemical vapour transport technique is adopted to prepare high quality Co0.33In2.67S2.29Se1.71 single crystals with high yield. …”
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    Journal Article
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    Two-dimensional (2D) covalent organic framework as efficient cathode for binder-free lithium-ion battery by Yao, Chang-Jiang, Wu, Zhenzhen, Xie, Jian, Yu, Fei, Guo, Wei, Xu, Zhichuan Jason, Li, Dong-Sheng, Zhang, Shanqing, Zhang, Qichun

    Published 2020
    “…Searching new organic cathode materials to address the issues of poor cycle stability and low capacity in lithium ion batteries (LIBs) is very important and highly desirable. …”
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    Journal Article
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    A large-area lithium metal–carbon nanotube film for precise contact prelithiation in lithium-ion batteries by Wang, Chao, Yang, Fangzhou, Wan, Wang, Wang, Shihe, Zhang, Yongyi, Huang, Yunhui, Li, Ju

    Published 2024
    “…Prelithiation is a method to improve the energy density and cycle life of lithium-ion batteries, and contact prelithiation of the graphite anode using thin lithium foil is a promising technique. …”
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    Article
  15. 295

    Selective and Chemical-Free Removal of Toxic Heavy Metal Cations from Water Using Shock Ion Extraction by Alkhadra, Mohammad A, Jordan, Matthew L, Tian, Huanhuan, Arges, Christopher G, Bazant, Martin Z

    Published 2024
    “…Electrochemical methods are known to have attractive features and capabilities when used for ion separations and water purification. In this study, we developed a new process called shock ion extraction (shock IX) for selective and chemical-free removal of toxic heavy metals from water. …”
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    Article
  16. 296

    A conjugated copolymer of N‐Phenyl‐p‐phenylenediamine and pyrene as promising cathode for rechargeable Lithium–ion batteries by Yao, Chang‐Jiang, Xie, Jian, Wu, Zhenzhen, Xu, Zhichuan, Zhang, Shanqing, Zhang, Qichun

    Published 2019
    “…A novel conjugated copolymer has been synthesized and employed as an organic cathode material in rechargeable Lithium-ion batteries (LIBs). Due to the synergistic effects from conducting aniline and pyrene units, the resultant batteries based on the as-obtained copolymer can deliver a promising reversible specific capacity of 113 mAh g-1 with a high voltage output of 3.2 V and a remarkable 75.2 % capacity retention after 180 cycles. …”
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    Journal Article
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    Vanadium pentoxide-based cathode materials for lithium-ion batteries : morphology control, carbon hybridization, and cation doping by Huang, Xin, Rui, Xianhong, Hng, Huey Hoon, Yan, Qingyu

    Published 2015
    “…Vanadium pentoxide (V2O5) is a promising cathode material for high-performance lithium-ion batteries (LIBs) because of its high specific capacity, low cost, and abundant source. …”
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    Journal Article
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