Highly dielectric film
a dielectric film, high-dielectric technology, applied in the direction of thermoelectric devices, fixed capacitors, transportation and packaging, etc., can solve the problems of difficult film thickness, difficult film formation, lowering of withstand voltage, etc., to achieve excellent winding property, high dielectric property, and thin
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example 1
[0102]Into a 3-liter separable flask were poured 900 parts by mass of N-methylpyrrolidone (NMP) (available from Tokyo Chemical Industry Co., Ltd.) and 100 parts by mass of polyvinylidene fluoride (PVdF) polymer (VP832 available from DAIKIN INDUSTRIES, LTD., dielectric constant: 9.8 (1 kHz, 25° C.)), and 4-hour stirring was carried out at 80° C. under nitrogen gas atmosphere with a mechanical stirrer to obtain a polymer solution having a concentration of 10% by mass. This polymer solution was a light-yellow homogeneous solution.
[0103]To this NMP solution of PVdF were added 100 parts by mass of barium titanate (BT-01 available from Sakai Chemical Industry Co., Ltd.) having an average particle size of 0.1 μm and further 10 parts by mass of PLANEACT KR-55 available from AJINOMOTO CO., INC. as a titanium coupling agent.
[0104]To this mixture was added the same mass of glass beads (GB503M available from Potters-Ballotini Co., Ltd.) as that of the mixture, and the obtained mixture was put i...
examples 2 to 10
[0108]Compositions of the present invention were prepared in the same manner as in Example 1 except that amounts of PVdF, barium titanate and a titanium coupling agent were changed as shown in Table 1, and a viscosity and dispersion stability thereof were evaluated. Further dielectric films were formed in the same manner as in Example 1, and a dielectric constant at each frequency, flexibility, surface center roughness and void content of the obtained films were evaluated. The results are shown in Table 1.
TABLE 1Example12345678910Composition (part by mass)Solvent (NMP)900900850800850900900900900900PVdF100100150200150100100100100100Barium titanate100150225300225150150150150150Coupling agent101522.53011.31.515157.51.5Characteristics of compositionDispersion stability◯◯◯◯◯◯◯◯◯◯Viscosity (Pa · s)0.580.581.451.580.590.590.590.590.590.59Characteristics of filmFilm thickness (μm)5.15.24.85.24.95.03.28.46.57.2Dielectric100 Hz37656463646464646361constant 1 kHz35606362626263636159 10 kHz34585...
examples 11 to 24
[0109]Compositions of the present invention were prepared in the same manner as in Example 1 except that various surfactants were added in an amount of 10% by mass based on barium titanate instead of the titanium coupling agent and amounts of PVdF and barium titanate were changed as shown in Table 2, and dispersion stability thereof was evaluated. Further dielectric films were formed in the same manner as in Example 1, and a dielectric constant at each frequency and flexibility of the obtained films were evaluated. The results are shown in Table 2.
[0110]Added surfactants S1 to S13 are as follows.
S1: Nonionic surfactant (poly-oxyethylene-distyrene-phenyl-ether) (EMULGEN A60 available from KAO CORPORATION)
S2: Anionic surfactant (special polycarboxylic acid polymer surfactant) (HOMOGENOL L18 available from KAO CORPORATION)
S3: Cationic surfactant (imidazoline surfactant) (HOMOGENOL L95 available from KAO CORPORATION)
S4: Nonionic surfactant (sorbitan monooleate) (REODOL sp10 available fr...
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