Polyolefin based piezoelectric polymer composite
A piezoelectric composite comprising (a) an olefin copolymer and (b) a plurality of piezoelectric filler particles is disclosed. Each of the plurality of piezoelectric filler particles can be dispersed in the olefin copolymer. Also disclosed are films containing such piezoelectric composites and methods of preparing such films.
1 . A piezoelectric composite, comprising:
an olefin copolymer comprising a first monomer of ethylene or propylene, polymerized with any of 1-butene, 4-methyl-1-pentene,1-hexene, 1-octene, 1-decene, 1-dodecene, 1-tetradecene, 1-hexadecene, 1-octadecene, and 1-eicosene; and
a plurality of piezoelectric filler particles dispersed in the olefin copolymer,
wherein the olefin copolymer is an ethylene-octene copolymer represented by the general formula:
wherein the ethylene-octene copolymer comprises from 10 to 40 wt. % octene.
2 . The piezoelectric composite of claim 1 , wherein the olefin copolymer is present in an amount ranging from 20-80 vol. %, with regard to the total volume of the piezoelectric composite.
3 . The piezoelectric composite of claim 1 , wherein the plurality of piezoelectric filler particles is present in an amount ranging from 20-80 vol. %, with regard to the total volume of the piezoelectric composite.
4 . The piezoelectric composite of claim 1 , further comprising at least one of polyethylene, polypropylene, ethylene copolymer, propylene copolymer, polyethylene terephthalate (PET), polycarbonate (PC), polybutylene terephthalate (PBT), poly(41,-cyclohexylidene cyclohexane-41,-dicarboxylate) (PCCD), glycol modified polycyclohexyl terephthalate (PCTG), poly(phenylene oxide) (PPO), polypropylene (PP), polyethylene (PE), polyvinyl chloride (PVC), polystyrene (PS), polymethyl methacrylate (PMMA), polyethyleneimine or polyetherimide (PEI) and their derivatives, thermoplastic elastomer (TPE), terephthalic acid (TPA) elastomers, poly(cyclohexanedimethylene terephthalate) (PCT), polyethylene naphthalate (PEN), polyamide (PA), polysulfone sulfonate (PSS), polyether ether ketone (PEEK), acrylonitrile butyldiene styrene (ABS), polyether ketone ketone (PEKK), polyphenylene sulfide (PPS), co-polymers thereof, or blends thereof.
5 . The piezoelectric composite of claim 1 , wherein the plurality of piezoelectric filler particles comprise at least one of lead zirconate titanate (PZT), hydroxyapatite, apatite, lithium sulfate monohydrate, sodium bismuth titanate, quartz, tartaric acid fibers, poly(vinylidene fluoride) fibers, barium titanate, lithium doped potassium sodium niobate (KNLN) having the formula (K,Na) 1-t Li t NbO 3 wherein the variable ‘t’ ranges from greater than 0.01 to less than 1 (0.01<t<1.00), potassium sodium niobate (K,NaNb)O 3 (KNN), or combinations thereof.
6 . The piezoelectric composite of claim 1 , wherein the plurality of piezoelectric filler particles comprises about 40 vol % to about 60 vol % of KNLN, with regard to the total volume of the piezoelectric composite.
7 . A film comprising the piezoelectric composite of claim 1 .
8 . The film of claim 7 , wherein the film has a piezoelectric charge constant (d 33 (pC/N)) ranging from about 6 to about 100.
9 . The film of claim 7 , wherein the piezoelectric voltage constant (g33 (mV·m/N) is ~100-300.
10 . The film of claim 7 , wherein the film has a thickness ranging from about 50 microns to about 500 microns.
11 . A method of preparing the film of claim 7 , wherein the method comprises:
dissolving an olefin copolymer in an organic solvent and forming an olefin copolymer solution, the olefin copolymer comprising a first monomer of ethylene or propylene, polymerized with any of 1-butene, 4-methyl-1-pentene,1-hexene, 1-octene, 1-decene, 1-dodecene, 1-tetradecene, 1-hexadecene, 1-octadecene and 1-eicosene;
adding a plurality of piezoelectric filler particles to the olefin copolymer solution and forming a film precursor;
forming a casted film precursor from the film precursor; and
poling the casted film precursor wherein the olefin copolymer is an ethylene-octene copolymer represented by the general formula:
wherein the ethylene-octene copolymer comprises from 10 to 40 wt. % octene.
12 . The method of claim 11 , wherein the casted film precursor is annealed prior to poling.
13 . The method of claim 11 , wherein the casted film precursor is poled at an electric field ranging from about 5 kV/mm to about 100 kV/mm for a time period ranging from about 1 minute to about 120 minutes and at a temperature ranging from about 60 degrees Celsius to about 120 degrees Celsius.