Showing 501 - 520 results of 10,246 for search '"anode"', query time: 0.15s Refine Results
  1. 501

    A new anode material for oxygen evolution in molten oxide electrolysis by Allanore, Antoine, Yin, Lan, Sadoway, Donald Robert

    Published 2013
    “…To enable metal production without process carbon, MOE requires an anode material that resists depletion while sustaining oxygen evolution. …”
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    Article
  2. 502

    Pushing up lithium storage through nanostructured polyazaacene analogues as anode by Wu, Jiansheng, Rui, Xianhong, Long, Guankui, Chen, Wangqiao, Yan, Qingyu, Zhang, Qichun

    Published 2015
    “…According to the evidence from both theoretical calculations and experimental findings, conjugated ladder polymers containing large π-conjugated structure, a high number of nitrogen heteroatoms, and a multiring aromatic system, could be an ideal organic anode candidate for lithium-ion batteries (LIBs). …”
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    Journal Article
  3. 503

    Iron-oxide-based advanced anode materials for lithium-ion batteries by Zhang, Lei, Wu, Hao Bin, Lou, David Xiong Wen

    Published 2014
    “…Iron oxides, such as Fe2O3 and Fe3O4, have recently received increased attention as very promising anode materials for rechargeable lithium-ion batteries (LIBs) because of their high theoretical capacity, non-toxicity, low cost, and improved safety. …”
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    Journal Article
  4. 504

    Germanium nanowires-based carbon composite as anodes for lithium-ion batteries by Yan, Qingyu, Tan, Li Ping, Lu, Ziyang, Tan, Huiteng, Zhu, Jixin, Rui, Xianhong, Hng, Huey Hoon

    Published 2013
    “…Herein, we report a novel approach where germanium nanowires (Ge NW) are grown in gold-seeded porous carbon via the solution–liquid–solid mechanism, and the corresponding improvement observed in terms of the specific capacity of this porous carbon–germanium nanowires (PC–Ge NW) composite anode. At a current density of 160 mAg−1 and voltage window of 0.001–1.5 V, a specific capacity of 789 mAhg−1 during the 50th cycle for PC–Ge NW is achieved as compared to 624 mAhg−1 during the 50th cycle for pure Ge NW. …”
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    Journal Article
  5. 505

    An investigation on the relationship between the stability of lithium anode and lithium nitrate in electrolyte by Yu, Linghui, Song, Jiajia, Wang, Paul Luyuan, Ong, Samuel Jun Hong, Gu, Chengding, Liao, Hanbin, Wang, Ting, Chen, Wei, Lev, Ovadia, Xu, Jason Zhichuan

    Published 2020
    “…Understanding the relationship between lithium anode and electrolyte is important to develop a more compatible lithium/electrolyte system for stable and safe cycling of lithium-metal based batteries. …”
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    Journal Article
  6. 506
  7. 507

    Stable zinc anodes enabled by a zincophilic polyanionic hydrogel layer by Yang, Jin-Lin, Li, Jia, Zhao, Jian-Wei, Liu, Kang, Yang, Peihua, Fan, Hong Jin

    Published 2022
    “…The practical application of the Zn-metal anode for aqueous batteries is greatly restricted by catastrophic dendrite growth, intricate hydrogen evolution, and parasitic surface passivation. …”
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    Journal Article
  8. 508
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  11. 511

    Fabrication of gold nanotip array using anodic aluminum oxide (AAO) by Huang, Yuan Peng.

    Published 2010
    “…The AAO template was successfully fabricated using 2 acid anodization. The pore diameter was controlled with the manipulated of voltage and electrolyte during anodization. …”
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    Final Year Project (FYP)
  12. 512

    Development of novel proton exchange membranes and anode catalysts for fuel cells by Lu, Jin Lin

    Published 2011
    “…CO poisoning to the catalysts remains a serious problem for PEMFC and DMFC. The sluggish anode reaction of methanol oxidation and the methanol crossover causing a mixed potential reduction significantly retard the commercialization process of DMFC. …”
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    Thesis
  13. 513

    Microstructure characterization and corrosion resistance evaluation of titanium anodized at different voltages by Goh, Kim Leng.

    Published 2013
    “…In this project, pure titanium will first undergo anodizing at 50 V, 100 V and 200 V where titanium dioxide will form. …”
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    Final Year Project (FYP)
  14. 514
  15. 515

    Morphology controlled lithium storage in Li3VO4 anodes by Yang, Guang, Zhang, Bowei, Feng, Jianyong, Lu, Yu, Wang, Zhiqiang, Aravindan, Vanchiappan, Aravind, Muthiah, Liu, Jilei, Srinivasan, Madhavi, Shen, Zexiang, Huang, Yizhong

    Published 2018
    “…Li3VO4 (LVO) anode materials with controllable morphologies ranging from spherical-assemblies, single-crystal nanorods, and flower shapes to bulk-shapes were fabricated via a solvothermal approach using different alcohols (i.e., ethanol, methanol, propanol, and butanol). …”
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    Journal Article
  16. 516
  17. 517

    Novel silicon–nickel cone arrays for high performance LIB anodes by Fan, Yu, Huang, Kai, Zhang, Qing, Xiao, Qizhen, Wang, Xinghui, Chen, Xiaodong

    Published 2013
    “…We report on a high performance silicon anode based on silicon–nickel cone arrays. The composite electrode exhibits good capacity retention and remarkable rate performance. …”
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    Journal Article
  18. 518

    Solid oxide fuel cell anode materials for direct hydrocarbon utilization by Ge, Xiaoming, Chan, Siew Hwa, Liu, Qing-Lin, Sun, Qiang

    Published 2013
    “…In this paper, direct hydrocarbon SOFC anode materials are classified into three general categories: Ni-cermet, Cu-cermet, and oxide-based anodes. …”
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    Journal Article
  19. 519

    DIFFERENTIAL PULSE ANODIC STRIPPINGVOLTAMMETRY FOR DETERMINATIONOF SOME HEAVY METALS IN URANIUM by Perpustakaan UGM, i-lib

    Published 2009
    “…ABSTRACT The direct determination of some metals impurity in uranium by using differential pulse anodic stripping voltammetry (DPASV) method at a hanging mercury drop electrode and in a carbonate buffer media was developed. …”
    Article
  20. 520