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Research Paper

Scalable and controlled synthesis of 2D nanoporous Co3O4 from bulk alloy for potassium ion batteries

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Pages 594-599 | Received 23 Dec 2019, Accepted 14 Jan 2020, Published online: 24 Jan 2020

References

  • Zhao D, Xie D, Liu H, et al. Flexible α-Fe2O3 nanorod electrode materials for sodium-ion batteries with excellent cycle performance. Functional Materials Letters. 2018;11(06):1840002.
  • Yao Z, Xia X, Xie D, et al. Enhancing Ultrafast Lithium Ion Storage of Li4Ti5O12by Tailored TiC/C Core/Shell Skeleton Plus Nitrogen Doping. Adv Funct Mater. 2018;28:1802756.
  • Zhou L, Zhang X, Zheng D, et al. Ni3S2 @PANI core–shell nanosheets as a durable and high-energy binder-free cathode for aqueous rechargeable nickel–zinc batteries . ?J Mater Chem A. 2019;7(17):10629–10635.
  • Shi W, Xu X, Zhang L, et al. Metal-organic framework-derived structures for next-generation rechargeable batteries. Funct Mater Lett. 2018;11(06):1830006.
  • Ni J, Li L. Self-Supported 3D Array Electrodes for Sodium Microbatteries. Adv Funct Mater. 2018;28(3):1704880.
  • Sun M, Jiang Y, Ni J, et al. Application of materials based on group VB elements in sodium-ion batteries: a review. J Mater Sci Technol. 2018;34(11):1969–1976.
  • Ni J. Editorial: functional materials for next-generation rechargeable batteries. Funct Mater Lett. 2018;11(06):1802001.
  • Ni J, Li L, Lu J. Phosphorus: an anode of choice for sodium-ion batteries. ACS Energy Lett. 2018;3(5):1137–1144.
  • Ren X, Zhao Q, McCulloch WD, et al. MoS2 as a long-life host material for potassium ion intercalation. Nano Res. 2017;10(4):1313–1321.
  • Yao Q, Zhang J, Li J, et al. Yolk–shell NiSx @C nanosheets as K-ion battery anodes with high rate capability and ultralong cycle life. ?J Mater Chem A. 2019;7(32):18932–18939.
  • Fang L, Xu J, Sun S, et al. Few-layered tin sulfide nanosheets supported on reduced graphene oxide as a high-performance anode for potassium-ion batteries. Small. 2019;15(10):e1804806.
  • Shen S, Xia X, Zhong Y, et al. Implanting niobium carbide into trichoderma spore carbon: a new advanced host for sulfur cathodes. Adv Mater. 2019;31(16):e1900009.
  • Zhong Y, Xia X, Deng S, et al. Spore carbon from aspergillus oryzae for advanced electrochemical energy storage. Adv Mater. 2018;30(46):e1805165.
  • Zhu L, Zheng D, Wang Z, et al. A confinement strategy for stabilizing ZIF-derived bifunctional catalysts as a benchmark cathode of flexible all-solid-state zinc-air batteries. Adv Mater. 2018;30(45):e1805268.
  • He X, Zhang H, Zhao X, et al. Stabilized molybdenum trioxide nanowires as novel ultrahigh-capacity cathode for rechargeable zinc ion battery. Adv Sci (Weinh). 2019;6(14):1900151.
  • Fan X, Ni K, Yang H, et al. Hierarchical porous CoOx/carbon nanocomposite for enhanced lithium storage. J Electroanal Chem. 2019;847:113202.
  • Fan X, Li S, Cui Y, et al. Fe3O4/rice husk-based maco-/mesoporous carbon bone nanocomposite as superior high-rate anode for lithium ion battery. J Solid State Electrochem. 2016;21(1):27–34.
  • Cheong JY, Chang JH, Cho S-H, et al. High-rate formation cycle of Co3O4 nanoparticle for superior electrochemical performance in lithium-ion batteries. Electrochim Acta. 2019;295:7–13.
  • Liu J, Dai J, Huang L, et al. Flexible and binder-free electrospun Co3O4 nanoparticles/carbon composite nanofiber mats as negative electrodes for sodium-ion batteries. Funct Mater Lett. 2018;11(05):1850072.
  • Wang X, Wang F, Wang L, et al. An aqueous rechargeable Zn//Co3O4 battery with high energy density and good cycling behavior. Adv Mater. 2016;28(24):4904–11.
  • Xu C, Liu Y, Zhou C, et al. An in situ dealloying and oxidation route to Co3O4 Nanosheets and their ambient-temperature CO oxidation activity. ChemCatChem. 2011;3(2):399–407.
  • Al-Tabbakh AA, Karatepe N, Al-Zubaidi AB, et al. Crystallite size and lattice strain of lithiated spinel material for rechargeable battery by X-ray diffraction peak-broadening analysis. Int J Energy Res. 2019;43(5):1903–1911.
  • Zhuo S, Tang M, Wu Y, et al. Size control of zwitterionic polymer micro/nanospheres and its dependence on sodium storage. Nanoscale Horiz. 2019;4(5):1092–1098.
  • Yu T, Zhu YW, Xu XJ, et al. Controlled growth and field-emission properties of cobalt oxide nanowalls. Adv Mater. 2005;17(13):1595–1599.
  • Chen Y, Ji X. Bamboo-like Co3O4 nanofiber as host materials for enhanced lithium-sulfur battery performance. J Alloys Compd. 2019;777:688–692.
  • Men Y, Liu X, Yang F, et al. Carbon encapsulated hollow Co3O4 composites derived from reduced graphene oxide wrapped metal–organic frameworks with enhanced lithium storage and water oxidation properties. Inorg Chem. 2018;57(17):10649–10655.
  • Liu S, Feng J, Bian X, et al. The morphology-controlled synthesis of a nanoporous-antimony anode for high-performance sodium-ion batteries. Energy Environ Sci. 2016;9(4):1229–1236.
  • Tian Y, An Y, Xiong S, et al. A general method for constructing robust, flexible and freestanding MXene@metal anodes for high-performance potassium-ion batteries. ?J Mater Chem A. 2019;7(16):9716–9725.

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