US2018166679A1PendingUtilityA1

High-rate-charging cathodes with in-battery polymerization of conducting polymers

Assignee: STOREDOT LTDPriority: Dec 11, 2016Filed: Aug 25, 2017Published: Jun 14, 2018
Est. expiryDec 11, 2036(~10.4 yrs left)· nominal 20-yr term from priority
C08G 61/124H01M 2004/028C08G 61/126H01M 4/623H01M 4/0445H01M 4/1397H01M 10/049C08G 73/0266C08G 2261/18C08G 2261/1424H01M 4/5825H01M 10/0525C08G 2261/228C08G 2261/3223C08G 2261/3221H01M 4/136H01M 4/608H01M 10/44H01M 10/052H01M 4/622H01M 4/624H01M 4/583Y02E60/10
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Claims

Abstract

Cathodes for a fast charging lithium ion battery, processes for manufacturing thereof and corresponding batteries are provided. Cathode formulations comprise cathode material having an olivine-based structure, binder material, and monomer material selected to polymerize into a conductive polymer upon partial delithiation of the cathode material during at least a first charging cycle of a cell having a cathode made of the cathode formulation. When the cathode is used in a battery, polymerization is induced in-situ (in-cell) during first charging cycle(s) of the battery to provide a polymer matrix which is evenly dispersed throughout the cathode.

Claims

exact text as granted — not AI-modified
1 . A cathode, prepared from a cathode formulation comprising:
 cathode material having an olivine-based structure,   binder material, and   monomer material selected to polymerize into a conductive polymer upon partial delithiation of the cathode material during at least a first charging cycle of a cell having the cathode,   wherein:   the monomer material is in monomer form in the cathode in its pristine form prior to the first charging cycle of the cell,   the partial delithiation is carried out electrochemically during the first charging cycle of the cell, and   following the first charging cycle of the cell, the monomer material is at least partly polymerized.   
     
     
         2 . The cathode of  claim 1 , wherein the cathode material comprises LFP (LiFePO 4 ). 
     
     
         3 . The cathode of  claim 1 , wherein the cathode material is A z MXO 4  wherein A is Li, alone or partially replaced by at most 10% of Na and/or K; 0≤z≤1, M is at least 50% of Fe(II) or Mn(II) or mixture thereof; and XO 4  is PO 4 , alone or partially replaced by at most 10 mol % of at least one group selected from SO 4  and SiO 4 . 
     
     
         4 . The cathode of  claim 1 , wherein the cathode material further comprises a carbon coating. 
     
     
         5 . The cathode of  claim 1 , wherein the monomer material comprises monomers of at least one of pyrrole, aniline, thiophene, phenyl mercaptan, furan, phenol, ethylenedioxythiophene and styrenesulfonate. 
     
     
         6 . The cathode of  claim 5 , wherein at least one ring in the monomers is substituted with one or more straight, branched or bridged alkyl, alkenyl, oxa-alkyl, oxa-alkenyl, aza-alkyl, aza-alkenyl, thia-alkyl, thia-alkenyl, sila-alkyl, sila-alkenyl, aryl, aryl-alkyl, alkyl-aryl, alkenyl-aryl, dialkylamino or dialkylazo group, comprising 1-30 carbon atoms. 
     
     
         7 . The cathode of  claim 1 , wherein the monomer material comprises a combination of monomers and oligomers. 
     
     
         8 . The cathode  claim 1 , wherein the binder material comprises at least one of:
 carboxymethyl cellulose (CMC), polyvinylidene difluoride (PVDF), polyacrylic acid (PAA), polyethylene oxide (PEO), polyvinyl alcohol (PVA) and alginate.   
     
     
         9 . The cathode of  claim 1 , comprising 80-90% of the cathode material, 1-10% of the binder material and 1-10% of the monomer material. 
     
     
         10 . The cathode of  claim 1 , comprising 90-98% of the cathode material, 1-5% of the binder material and 1-5% of the monomer material. 
     
     
         11 . A cell comprising the cathode of  claim 1 . 
     
     
         12 . A cell comprising:
 an anode,   electrolyte,   a separator, and   a cathode comprising:
 cathode material having an olivine-based structure, 
 binder material, and 
 a conductive polymer formed during at least a first charging cycle of the cell from monomer material selected to polymerize into the conductive polymer upon partial delithiation of the cathode material, 
 wherein: 
 the monomer material is in monomer form in the cathode in its pristine form prior to the first charging cycle of the cell, 
 the partial delithiation is carried out electrochemically during the first charging cycle of the cell, and 
 following the first charging cycle of the cell, the monomer material is at least partly polymerized. 
   
     
     
         13 . The cell of  claim 12 , having a charging curve, in at least a first charging thereof, which comprises a local peak at a specified potential which corresponds to a polymerization reaction of the monomer material in presence of the partially delithiated cathode material. 
     
     
         14 . A method comprising configuring a cathode made of cathode material having an olivine-based structure for in-situ polymerization, by adding to the cathode material monomer material selected to polymerize into a conductive polymer upon partial delithiation of the cathode material during at least a first charging cycle of a cell with the cathode,
 wherein the monomer material is in monomer form in the cathode in its pristine form prior to the first charging cycle of the cell,   the partial delithiation is carried out electrochemically during the first charging cycle of the cell, and   following the first charging cycle of the cell, the monomer material is at least partly polymerized.   
     
     
         15 . The method of  claim 14 , further comprising polymerizing the monomer material during the at least first charging cycle of the cell. 
     
     
         16 . The method of  claim 14 , wherein the monomer material comprises monomers and oligomers, and the method further comprises polymerizing the monomers and the oligomers during the at least first charging cycle of the cell. 
     
     
         17 . The method of  claim 14 , further comprising operating the cell at a charging and/or discharging rate of at least 5 C.

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