Polysulfone nano-fiber diaphragm for lithium battery and preparation method of polysulfone nano-fiber diaphragm
A technology of nanofibers and lithium batteries, which is applied in the field of separators for lithium batteries and their preparation, polysulfone nanofiber separators for lithium batteries and their preparations, which can solve the problems of limited porosity and poor uniformity of battery separators, and increase the porosity , Good uniformity of film formation, and the effect of ensuring quality
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Embodiment 1
[0027] A polysulfone nanofiber diaphragm for a lithium battery. The polysulfone nanofiber diaphragm for a lithium battery is made by dissolving one or a plurality of polysulfones in any proportion in a polar organic solvent, and then electrospinning. The polysulfone nanofiber separator for lithium batteries described above has a thickness of 10 μm, a diameter of 100 nm, an elongation at break of 15%, a thermal decomposition temperature of 250°C, a porosity of 20%, a mechanical tensile strength of 15 MPa, and an electrical breakdown strength of 1×10 7 V / m.
Embodiment 2
[0029] A polysulfone nanofiber diaphragm for a lithium battery. The polysulfone nanofiber diaphragm for a lithium battery is made by dissolving one or a plurality of polysulfones in any proportion in a polar organic solvent, and then electrospinning. The polysulfone nanofiber separator for lithium batteries described above has a thickness of 50 μm, a diameter of 300 nm, an elongation at break of 25%, a thermal decomposition temperature of 350°C, a porosity of 90%, a mechanical tensile strength of 20 MPa, and an electrical breakdown strength of 1.5×10 7 V / m.
Embodiment 3
[0031] A polysulfone nanofiber diaphragm for a lithium battery. The polysulfone nanofiber diaphragm for a lithium battery is made by dissolving one or a plurality of polysulfones in any proportion in a polar organic solvent, and then electrospinning. The polysulfone nanofiber separator for lithium batteries described above has a thickness of 30 μm, a diameter of 200 nm, an elongation at break of 20%, a thermal decomposition temperature of 300 °C, a porosity of 55%, a mechanical tensile strength of 17.5 MPa, and an electrical breakdown strength of 1.25× 10 7 V / m.
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