TLG 3.33% 58.0¢ talga group ltd

Ann: 2021 AGM Presentation, page-300

  1. 6,614 Posts.
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    Yes. I see this Talga patent as being the same as the 4680 anode.

    An earlier patent by Group 14 used pyrolized polymer to build a carbon scaffold. The patent specification does not have any illustrative diagrams showin the carbon scaffold.

    The silicon containing precursor used by Group 14 is silane, disilane, trisilane, tetrasilan, whereas Talga uses industrial grade silicon.

    WO2018165610A1DECOMPOSITION OF SILICON-CONTAINING PRECURSORS ON POROUS SCAFFOLD MATERIALS

    A method for producing a composite material comprising a porous carbon scaffold and silicon, comprising the following steps:

    a. mixing polymer precursors materials and storing the resulting mixture for a period of time at sufficient temperature to allow for polymerization of the precursors;

    b. carbonizing the resulting polymer material to create a porous carbon material;

    c. subjecting the porous carbon material to elevated temperature in the presence of a silicon-containing precursor and a hydrocarbon material that decomposes at a higher temperature than the silicon containing precursor;

    d. elevating the temperature to decompose the silicon containing precursor, resulting in a silicon impregnated carbon materials; and

    e. further elevating the temperature to decompose the hydrocarbon material, resulting in a carbon-coated, silicon impregnated carbon material.

    Another mob who claim to have 4680 anode formula are StoreDot:

    US2021210747A1PASSIVATED AND/OR PROTECTED SILICON ANODE MATERIAL SLURRIES
    (Priority 6 months later than Talga's)

    [0064] Certain embodiments comprise a mixture 121 of anode material particles 125 A comprising silicon particles 90 A having carbon passivation layers 123 (possibly amorphous) that are non-reactive in an oxidizing environment. Certain embodiments comprise anodes 135 for fast charging lithium ion batteries, which comprise mixture 121 of anode material particles 125 A, consolidated with binder and conductive materials 92 from a water-based slurry.

    [0065] Certain embodiments comprise anodes 135 for fast charging lithium ion batteries, which comprise reduced mixture 121 of silicon particles 90 having passivation layers 123 (possibly carbon-based, possibly amorphous), consolidated with binder and conductive materials 92 from a water-based slurry to form anode 135 , wherein mixture 121 is reduced from a mixture 111 of silicon particles 90 A with nanoparticles (NPs) 95 such as metalloid oxide and/or salt NPs 95 A (e.g., any of SnO, SnO2 , SnCl2 ), salt NPs 95 B (e.g., SbCl2 or other antimony salts, CuCl2 or other copper salts, as well as antimony and/or tin alloys) and/or carbon NPs 95 C (e.g., carbon black, SC65), and a carbon-based binder and/or surfactant 85 (e.g., PVP or any other carbon-based binder/surfactant, e.g., as listed above)
    .
    https://hotcopper.com.au/data/attachments/3845/3845338-89587b78b56d6105da104b99958f549c.jpg



    Last edited by BarrelSitter: 30/11/21
 
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