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Showing 321 - 340 results of 2,240 for search '((ssainae OR fine) OR ((((spinn OR spin) OR (ins OR ions)) OR ching) OR pin))', query time: 0.21s Refine Results
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    Optimum Model-Based Design of Diagnostics Experiments (DOE) with Hybrid Pulse Power Characterization (HPPC) for Lithium-Ion Batteries by Rhyu, Jinwook, Zhuang, Debbie, Bazant, Martin Z, Braatz, Richard D

    Published 2024
    “…Diagnostics of lithium-ion batteries are frequently performed in battery management systems for optimized operation of lithium-ion batteries or for second-life usage. …”
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    Article
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    Engineering nano-nodular pattern on the substrate surface by tuning phase inversion to construct ultrapermselective ion-separation nanofiltration membrane by Zhao, Yali, Li, Can, Liao, Yuan, Yin, Yurong, Wang, Rong, Chen, Dongliang

    Published 2024
    “…Ion-selective permeable membranes show enormous potential in salt separation and resource recovery, but the permselectivity of current membranes restricts their broad application. …”
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    Journal Article
  7. 327

    Facile oxidative recovery of manganese as electrochemically active MnO2 from spent lithium-ion battery bioleachate by Ranganathan, Deepika, Roy, Joseph Jegan, Cao, Bin, Srinivasan, Madhavi

    Published 2024
    “…In view of the rapidly growing volumes of spent lithium-ion battery (LIB) waste being generated annually, there is an urgent need to develop novel and green approaches to recover critical metals from spent LIBs in the form of technologically valuable materials for reincorporation back into battery manufacturing to achieve a circular economy for electronic waste. …”
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    Journal Article
  8. 328

    Laser-pyrolysed ZnFe2O4 anode for lithium-ion batteries : understanding of the lithium storage mechanisms by Bourrioux, Samantha

    Published 2018
    “…The lithium-ion technology is well implemented for portable electronic devices but suffers from low energy density, safety, cost, cycle life and power density for next-generation large scale applications in electric vehicles and renewable energy storage. …”
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    Thesis
  9. 329

    Microstructure array on Si and SiOx generated by micro-contact printing, wet chemical etching and reactive ion etching by Amro, Nabil A., Zhang, Hua, Disawal, Sandeep, Elghanian, Robert, Shile, Roger, Fragala, Joseph

    Published 2013
    “…A method, combining micro-contact printing (μCP), wet chemical etching and reactive ion etching (RIE), is reported to fabricate microstructures on Si and SiOx. …”
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    Journal Article
  10. 330

    Three dimensionals α-Fe2O3/polypyrrole (Ppy) nanoarray as anode for micro lithium ion batteries by Lai, Linfei, Yang, Huanping, Lim, San Hua, Zhen, Yongda, Yu, Ting, Shen, Zexiang, Lin, Jianyi, Liu, Jilei, Zhou, Weiwei

    Published 2013
    “…By using α-Fe2O3/Ppy as the anode materials with iron foil as the current collector, the unique structure affords a highly conductive pathway for electron, a short diffusion length for ions, a fast mass transport channel for electrolyte, and sufficient void space for accommodating large volume variations during Li intercalation/diintercalation for Li-ion battery. …”
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    Journal Article
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    Insight into copper and iron ion sequestration from liquid-phase environment by microcrystalline cellulose biosorbent: experimental and modelling analyses by Abdullah, Mohammad, Abdullah, Luqman Chuah, Adeyi, Abel Adekanmi, Md. Jamil, Siti Nurul Ain, Choong, Thomas Shean Yaw, Abd. Majid, Rohah

    Published 2024
    “…The maximum sorption capacity of MCC was 534.61 mg/g and 845.75 mg/g, respectively, for Cu(II) and Fe(II) ions at room temperature. Pseudo-second-order model best describes the copper and iron kinetic data, signifying the dominance of chemisorption adsorption relation between the negatively charged MCC and adsorbates. …”
    Article
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    Positively-Coated Nanofiltration Membranes for Lithium Recovery from Battery Leachates and Salt-Lakes: Ion Transport Fundamentals and Module Performance by Foo, Zi Hao, Liu, Suwei, Kanias, Lucy, Lee, Trent R., Heath, Samuel M., Tomi, Yasuhiro, Miyabe, Tomotsugu, Keten, Sinan, Lueptow, Richard M., Lienhard, John H.

    Published 2024
    “…This study examines polyamide NF membranes coated with polyelectrolytes enriched with ammonium groups to maintain high monovalent cation selectivity in hypersaline conditions. Over 8000 ion rejection measurements are recorded using salt lake brines and battery leachates. …”
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    Article
  17. 337

    NaTi₂(PO₄)₃ hollow nanoparticles encapsulated in carbon nanofibers as novel anodes for flexible aqueous rechargeable sodium-ion batteries by He, Bing, Yin, Kuibo, Gong, Wenbin, Xiong, Yuwei, Zhang, Qichong, Yang, Jiao, Wang, Zhixun, Wang, Zhe, Chen, Mengxiao, Man, Ping, Coquet, Philippe, Yao, Yagang, Sun, Litao, Wei, Lei

    Published 2022
    “…NASICON-structured NaTi2(PO4)3 (NTP) is an attractive anode material for aqueous rechargeable sodium-ion batteries (ARSIBs) thanks to its three-dimensional open framework and appropriate negative voltage window. …”
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    Journal Article
  18. 338

    Dental resin monomer enables unique NbO2/carbon lithium-ion battery negative electrode with exceptional performance by Ji, Q, Gao, X, Zhang, Q, Jin, L, Wang, D, Xia, Y, Yin, S, Xia, S, Hohn, N, Zuo, X, Wang, X, Xie, S, Xu, Z, Ma, L, Chen, L, Chen, G, Zhu, J, Hu, B, Müller-Buschbaum, P, Bruce, PG, Cheng, L

    Published 2019
    “…However, studies on NbO2 based lithium-ion battery negative electrodes have been rarely reported. …”
    Journal article
  19. 339

    Work / memories of work by Arkomanis, Ektoras

    Published 2016
    Subjects: “…700 The arts; fine & decorative arts…”
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    Video
  20. 340

    Search for a new resonance decaying into two spin-0 bosons in a fnal state with two photons and two bottom quarks in proton-proton collisions at √s = 13 TeV by Tumasyan, A., Adam, W., Andrejkovic, J. W., Bergauer, T., Chatterjee, S., Damanakis, K., Dragicevic, M., Escalante Del Valle, A., Hussain, P. S., Jeitler, M., Krammer, N., Lechner, L., Liko, D., Mikulec, I., Paulitsch, P., Pitters, F. M.

    Published 2024
    “…The resonance X decays into either a pair of Higgs bosons HH of mass 125 GeV or an H and a new spin-0 boson Y. One H subsequently decays to a pair of photons, and the second H or Y, to a pair of bottom quarks. …”
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    Article