CARBON FIBER LITHIUM SUPPLEMENT FILM, PREPARATION METHOD THEREOF, SECONDARY BATTERY AND POWER CONSUMPTION APPARATUS INCLUDING THE SAME
The present application provides a carbon fiber lithium supplement film, a preparation method thereof, a second battery and a power consumption apparatus including the same. The carbon fiber lithium supplement film may include a carbon fiber and a lithium supplement agent embedded in the carbon fiber, a diameter of the carbon fiber may be 450 nm-850 nm, and a mass percentage the lithium supplement agent in the carbon fiber lithium supplement film may be 40%-80.5%.
1 . A carbon fiber lithium supplement film, comprising a carbon fiber and a lithium supplement agent embedded in the carbon fiber, a diameter of the carbon fiber is 450 nm-850 nm, and a mass percentage the lithium supplement agent in the carbon fiber lithium supplement film is 40%-80.5%.
2 . The carbon fiber lithium supplement film according to claim 1 , wherein a thickness of the carbon fiber lithium supplement film is 2 μm-10 μm.
3 . The carbon fiber lithium supplement film according to claim 1 , wherein a conductivity of the carbon fiber lithium supplement film is 40 S·cm −1 -130 S·cm −1 .
4 . The carbon fiber lithium supplement film according to claim 1 , wherein the lithium supplement agent is in a form of a particle, and a particle size of the particle D v50 ≤850 nm.
5 . The carbon fiber lithium supplement film according to claim 1 , wherein an areal density of the carbon fiber lithium supplement film is 0.8 mg/cm 2 -3 mg/cm 2 .
6 . The carbon fiber lithium supplement film according to claim 1 , wherein the lithium supplement agent is one or more of Li 5 FeO 4 , Li 6 CoO 4 , Li 2 O and Li 2 S.
7 . A method for preparing a carbon fiber lithium supplement film, containing the following steps:
(1) A polymer being dissolved in a solvent, then a lithium supplement agent being added and dispersed to obtain a dispersion;
(2) The dispersion in step (1) being electrospun to make a carbon fiber lithium supplement film precursor;
(3) The carbon fiber lithium supplement film precursor being pre-oxidized and carbonized to obtain a carbon fiber lithium supplement film; and
the carbon fiber lithium supplement film comprising a carbon fiber and a lithium supplement agent embedded in the carbon fiber, a diameter of the carbon fiber being 450 nm-850 nm, and a mass percentage the lithium supplement agent in the carbon fiber lithium supplement film being 40%-80.5%.
8 . The method according to claim 7 , wherein the polymer is one or more of polyacrylonitrile, polyvinyl alcohol and polyacrylic acid; and/or, a concentration of the polymer in the solvent is 0.5 g/10 ml −3 g/10 ml.
9 . The method according to claim 7 , wherein the solvent is selected from one or more of dimethylformamide, dimethylsulfoxide and sulfolan.
10 . The method according to claim 7 , wherein in the electrospinning, an electrostatic high voltage is 10 kv-25 kv; and/or
a receiving distance is 8 cm-30 cm; and/or
a spinning rate is 1 mL/h to 6 mL/h; and/or
a spinning time is 12 h-60 h.
11 . The method according to claim 7 , wherein in the pre-oxidation, an initial temperature is 10° C.-30° C.; and/or
a heating rate is 1° C./min-5° C./min; and/or
a holding temperature is 250° C.-300° C.; and/or
a soaking time is 1 h-5 h; and/or
a gas flow is 15 ml/min-50 ml/min.
12 . The method according to claim 7 , wherein in the carbonization treatment, an initial temperature is 15° C.-30° C.; and/or
a heating rate is 2° C./min-8° C./min; and/or
a holding temperature is 400° C.-600° C.; and/or
a soaking time is 1 h-5 h; and/or
a gas flow is 20 ml/min-60 ml/min.
13 . A secondary battery, comprising the carbon fiber lithium supplement film according to claim 1 .
14 . A power consumption device, comprising the secondary battery according to claim 13 .