Agglomerated boron nitride particles, composition containing said particles, and three-dimensional integrated circuit having layer comprising said composition
US-2017335160-A1 · Nov 23, 2017 · US
US10414653B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10414653-B2 |
| Application number | US-201816106120-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 21, 2018 |
| Priority date | Feb 5, 2014 |
| Publication date | Sep 17, 2019 |
| Grant date | Sep 17, 2019 |
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The agglomerated boron nitride particles are obtained by agglomerating boron nitride primary particles. The agglomerated BN articles are characterized in that: a peak area intensity ratio ((100)/(004)) of a (100) plane to a (004) plane of the BN primary particles is 0.25 or more, and the average crystallite size of the BN primary particles obtained from a (002) plane peak of the BN primary particles is 375 Å or more.
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The invention claimed is: 1. An agglomerated boron nitride particle ( “agglomerated BN particle”) constituted by boron nitride primary particles (“BN primary particles”), wherein a peak area intensity ratio ((100)/(004)) of a (100) plane to a (004) plane of the BN primary particles is 0.25 or more, the peak intensity ratio being obtained by subjecting, to a powder X-ray diffraction measurement, a pellet-shaped sample moulded at a moulding pressure of 0.85 ton/cm 2 using a 10 mmφ powder pellet moulding machine, the average crystallite size of the BN primary particles obtained from a (002) plane peak of the BN primary particles is 375 Å or more, the average crystallite size being obtained as a result of filling a glass sample plate having a depth of 0.2 mm with the agglomerated BN particles in such a way that the sample surface becomes smooth, and subjecting the agglomerated BN particles to a powder X-ray diffraction measurement, and an average particle diameter D 50 of the agglomerated BN particle is 26 μm or more. 2. The agglomerated BN particle according to claim 1 , wherein a specific surface area of the agglomerated BN particles is 8 m 2 /g or less. 3. The agglomerated BN particle according to claim 1 , wherein the agglomerated BN particle is spherical. 4. The agglomerated BN particle according to claim 1 , wherein the agglomerated BN particle has a card-house structure. 5. A composition of the agglomerated BN particle which is a mixture of the agglomerated BN particle according to claim 1 and filler. 6. A resin composition comprising agglomerated BN particles, comprising resin and the agglomerated BN particle according to claim 1 . 7. A moulded body comprising the agglomerated BN particles according to claim 1 . 8. A method of producing the agglomerated BN particle according to claim 1 , comprising: granulating slurry of raw material boron nitride powder ( “BN slurry”); and performing heating treatment, wherein in the granulating, a viscosity of the BN slurry is 200 mPa·s or more and 5000 mPa·s or less, and the heating treatment is performed at 1800° C. or more and 2300° C. or less. 9. The method according to claim 8 , wherein an oxygen concentration in the raw material boron nitride powder is 1% by mass or more and 10% by mass or less. 10. A sheet comprising agglomerated boron nitride particles (“agglomerated BN particles”), wherein a peak intensity ratio ((100)/(004)) of a (100) plane to a (004) plane of boron nitride primary particles (hereinafter referred to as “BN primary particles”) in the sheet obtained by subjecting the sheet to an X-ray diffraction measurement is 1.0 or more, an average crystallite size of the BN primary particles obtained from a (002) plane peak of the BN primary particles in the sheet obtained by subjecting the sheet to an X-ray diffraction measurement is 375 Å or more, and an average particle diameter D 50 of the agglomerated BN particles is 26 μm or more. 11. The sheet according to claim 10 , wherein the peak area intensity ratio ((100)/(004)) of the (100) plane to the (004) plane of the boron nitride primary particles (hereinafter referred to as “BN primary particles”) in the sheet obtained by subjecting the sheet to an X-ray diffraction measurement is 0.6 or more. 12. A device comprising the sheet according to claim 10 as a part of a member of the device.
obtained by TEM, STEM, STM or AFM · CPC title
Spheres · CPC title
After-treatment, e.g. grinding, purification (transformation of hexagonal into cubic or wurtzitic boron nitride C04B35/5831) · CPC title
Micrometer sized, i.e. from 1-100 micrometer · CPC title
Surface area · CPC title
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