Spinel particles, method for producing same and composition and molded article including spinel particles
US-11040887-B2 · Jun 22, 2021 · US
US11279830B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11279830-B2 |
| Application number | US-201716334557-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 21, 2017 |
| Priority date | Sep 21, 2016 |
| Publication date | Mar 22, 2022 |
| Grant date | Mar 22, 2022 |
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Provided is a surface-treated spinel particle (B) including a spinel particle (A) including a magnesium atom, an aluminum atom, and an oxygen atom and a surface treatment layer disposed at least a portion of the surface of the spinel particle (A). The surface treatment layer includes a surface-treating agent including an organic compound or a cured product of the surface-treating agent. The spinel particle (A) further includes molybdenum. The crystallite diameter of the [111] plane of the spinel particle (A) is 220 nm or more. Also provided are a method for producing the surface-treated spinel particle (B), a resin composition including the surface-treated spinel particle (B), and a molded article.
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The invention claimed is: 1. A surface-treated spinel particle (B) comprising a spinel particle (A) including a magnesium atom, an aluminum atom, and an oxygen atom and a surface treatment layer disposed at least a portion of the surface of the spinel particle (A), the surface treatment layer including a surface-treating agent including an organic compound or a cured product of the surface-treating agent, the spinel particle (A) further including molybdenum, the molybdenum content of the spinal particle (A) is 0.15 to 5% by mass, the crystallite diameter of the [111] plane of the spinel particle (A) being 220 nm or more, the crystallite diameter of the [311] plane of the spinel particle (A) being 100 nm or more and wherein the ratio ([111] plane/[311] plane) of the crystal peak intensity of the [111] plane of the spinel particle (A) to the crystal peak intensity of the [311] plane of the spinel particle (A) is 0.3 or more. 2. The surface-treated spinel particle (B) according to claim 1 , wherein the spinel particle (A) has an average diameter of 0.1 to 1000 μm. 3. The surface-treated spinel particle (B) according to claim 2 , wherein the organic compound is at least one organic compound selected from the group consisting of an organosilane compound, an organotitanium compound, and an organic phosphate compound. 4. The surface-treated spinel particle (B) according to claim 1 , wherein the organic compound is at least one organic compound selected from the group consisting of an organosilane compound, an organotitanium compound, and an organic phosphate compound. 5. A resin composition comprising the surface-treated spinel particle (B) according to claim 1 and a high-molecular weight organic compound (C). 6. A resin composition comprising the surface-treated spinel particle (B) according to claim 2 and a high-molecular weight organic compound (C). 7. A resin composition comprising the surface-treated spinel particle (B) according to claim 4 and a high-molecular weight organic compound (C). 8. A molded article produced by molding the resin composition according to claim 5 . 9. A method for producing a surface-treated spinel particle (B), the method comprising bringing a spinel particle (A) including a magnesium atom, an aluminum atom, and an oxygen atom, the crystallite diameter of the [111] plane of the spinel particle (A) being 220 nm or more, into contact with a surface-treating agent including at least one organic compound selected from the group consisting of an organosilane compound, an organotitanium compound, and an organic phosphate compound, in order to deposit the surface-treating agent onto at least a portion of the surface of the spinel particle (A) the spinel particle (A) further including molybdenum, the molybdenum content of the spinal particle (A) is 0.15 to 5% by mass. 10. The method for producing a surface-treated spinel particle (B) according to claim 9 , wherein the step of bringing the spinel particle (A) into contact with the surface-treating agent is conducted by a wet process.
Ingredients treated with organic substances {(treated with macromolecular compounds C08K9/08)} · CPC title
by d-values or two theta-values, e.g. as X-ray diagram · CPC title
Compounds of aluminium {(C09C1/0009, C09C1/0015, C09C1/0078, C09C1/32 take precedence)} · CPC title
of metals · CPC title
Compositions of unspecified macromolecular compounds · CPC title
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