Optical filter, and solid-state image pickup device and camera module using the optical filter

US9791606B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9791606-B2
Application numberUS-201615212866-A
CountryUS
Kind codeB2
Filing dateJul 18, 2016
Priority dateOct 14, 2011
Publication dateOct 17, 2017
Grant dateOct 17, 2017

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  1. Title

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  2. Abstract

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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Abstract

Official abstract text for this publication.

The problem of the present invention is to overcome drawbacks of conventional optical filters such as near-infrared cut filters and to provide an optical filter which generates little scatted light even during light absorption and has excellent transmittance property. The optical filter of the present invention is characterized by containing a squarylium-based compound and a compound which absorbs or quenches fluorescence of the squarylium-based compound. The optical filter of the present invention preferably contains a near-infrared absorbing dye containing a squarylium compound (A) and at least one compound (B) selected from the group consisting of a phthalocyanine-based compound (B-1) and a cyanine-based compound (B-2).

First claim

Opening claim text (preview).

The invention claimed is: 1. An optical filter comprising: a resin substrate which comprises a resin and a near-infrared absorbing dye; and a near-infrared reflecting film, wherein the near-infrared absorbing dye comprises a squarylium-based compound (A) and at least one compound (B) selected from the group consisting of a phthalocyanine-based compound (B-1) and a cyanine-based compound (B-2), wherein the absorption maximum of the squarylium-based compound (A) is present on the side of shorter wavelength than the absorption maximum of the at least one compound (B), wherein the squarylium-based compound (A) has the absorption maximum in the wavelength region of not less than 650 nm but less than 740 nm, and the at least one compound (B) has the absorption maximum in the wavelength region of more than 670 nm but not more than 760 nm, and the difference in the absorption maximum wavelength between the squarylium-based compound (A) and the at least one compound (B) is from 10 to 60 nm, and wherein an average transmittance of the optical filter in a wavelength region of from 430 nm to 580 nm is at least 87%, and an average transmittance of the optical filter in a wavelength region of from 800 nm to 1000 nm is at most 1%. 2. The optical filter according to claim 1 , wherein when the amount of the total near-infrared absorbing dye is 100% by weight, the content of the squarylium-based compound (A) is 20 to 95% by weight, and the content of the compound (B) is 5 to 80% by weight. 3. The optical filter according to claim 1 , wherein the squarylium-based compound (A) is a compound represented by the following formula (I) or (II): wherein R a , R b and Y satisfy the following condition (i) or (ii): (i) plural R a are each independently a hydrogen atom, a halogen atom, a sulfo group, a hydroxyl group, a cyano group, a nitro group, a carboxyl group, a phosphoric acid group, -L 1 or a —NR e R f group, wherein R e and R f are each independently a hydrogen atom, -L a , -L b , -L c , -L d or L e , plural R b are each independently a hydrogen atom, a halogen atom, a sulfo group, a hydroxyl group, a cyano group, a nitro group, a carboxyl group, a phosphoric acid group, -L 1 or a —NR g R h group, wherein R g and R h are each independently a hydrogen atom, -L a , -L b , -L c , -L d , -L e or a —C(O)R i group, wherein R i is -L a , -L b , -L c , -L d or L e , plural Y are each independently a —NR j R k group, wherein R j and R k are each independently a hydrogen atom, -L a , -L b , -L c , -L d or -L e , L 1 is (L a ) an aliphatic hydrocarbon group of 1 to 9 carbon atoms, which may have a substituent L, (L b ) a halogen-substituted alkyl group of 1 to 9 carbon atoms, which may have a substituent L, (L c ) an alicyclic hydrocarbon group of 3 to 14 carbon atoms, which may have a substituent L, (L d ) an aromatic hydrocarbon group of 6 to 14 carbon atoms, which may have a substituent L, (L e ) a heterocyclic group of 3 to 14 carbon atoms, which may have a substituent L, (L f ) an alkoxy group of 1 to 9 carbon atoms, which may have a substituent L, (L g ) an acyl group of 1 to 9 carbon atoms, which may have a substituent L, or (L h ) an alkoxycarbonyl group of 1 to 9 carbon atoms, which may have a substituent L, the substituent L is at least one kind selected from the group consisting of an aliphatic hydrocarbon group of 1 to 9 carbon atoms, a halogen-substituted alkyl group of 1 to 9 carbon atoms, an alicyclic hydrocarbon group of 3 to 14 carbon atoms, an aromatic hydrocarbon group of 6 to 14 carbon atoms and a heterocyclic group of 3 to 14 carbon atoms, and the above L a to L h may further have at least one atom or group selected from the group consisting of a halogen atom, a sulfo group, a hydroxyl group, a cyano group, a nitro group, a carboxyl group, a phosphoric acid group and an amino group; (ii) at least one of two R a on one benzene ring and Y on the same benzene ring are bonded to each other to form a heterocyclic ring of 5 or 6 constituent atoms containing at least one nitrogen atom, and the heterocyclic ring may have a substituent, and R b and R a which does not take part in the formation of the heterocyclic ring have the same meanings as those of R b and R a in the condition (i), respectively; wherein X is O, S, Se, N—R e or C—R d R d , plural R c are each independently a hydrogen atom -L a , -L b , -L c , -L d or -L e , plural R d are each independently a hydrogen atom, a halogen atom, a sulfo group, a hydroxyl group, a cyano group, a nitro group, a carboxyl group, a phosphoric acid group, -L 1 or a —NR e R f group, and neighboring R d and R d may be bonded to each other to form a ring which may have a substituent, and L a to L e , L 1 , R e and R f have the same meanings as those of L a to L e , L 1 , R e and R f defined in the formula (I). 4. The optical filter according to claim 3 , wherein the phthalocyanine-based compound (B-1) is a compound represented by the following formula (III): wherein M represents two hydrogen atoms, two monovalent metal atoms, a divalent metal atom, or substituted metal atoms containing a trivalent or tetravalent metal atom, plural R a , R b , R c and R d are each independently a hydrogen atom, a halogen atom, a hydroxyl group, a carboxyl group, a nitro group, an amino group, an amide group, an imide group, a cyano group, a silyl group -L 1 , —S-L 2 , —SS-L 2 , —SO 2 -L 3 or —N═N-L 4 , or at least one combination of R a and R b , R b and R c , and R c and R d is bonded to form at least one group selected from the group consisting of groups represented by the following formulas (A) to (H), and at least one of R a , R b , R c and R d bonded to the same aromatic ring is not a hydrogen atom, the amino group, the amide group, the imide group and the silyl group may have a substituent L defined in the formula (I), L 1 has the same meaning as that of L 1 defined in the formula (I), L 2 is a hydrogen atom or any one of L a to L e defined in the formula (I), L 3 is a hydroxyl group or any one of the above L a to L e , and L 4 is any one of the above L a to L e ; wherein a combination of R x and R y is a combination of R a and R b , R b and R c , or R c and R d , and plural R A to R L are each independently a hydrogen atom, a halogen atom, a hydroxyl group, a nitro group, an amino group, an amide group, an imide group, a cyano group, a silyl group, -L 1 , —S-L 2 , —SS-L 2 , —SO 2 -L 3 or —N═N-L 4 , wherein L 1 to L 4 have the same meanings as those of L 1 to L 4 defined in the formula (III), and the amino group, the amide group, the imide group and the silyl group may have the substituent L. 5. The optical filter according to claim 4 , wherein M in the formula (III) is a divalent transition metal, a halide of a trivalent or tetravalent metal or an oxide of a tetravalent metal, each of said metals belonging to the periodic table Group 5 to Group 11 and belonging to the periodic table Period 4 to Period 5. 6. The optical filter according to claim 3 , wherein the cyanine-based compound (B-2) is a compound represented by any one of the following formulas (IV-1) to (IV-3): wherein X a − is a monovalent anion, plural D are each independentl

Assignees

Inventors

Classifications

  • containing organic luminescent materials · CPC title

  • Non-condensed systems · CPC title

  • Blends of pigments; Mixtured crystals; Solid solutions · CPC title

  • G02B5/208Primary

    for use with infrared or ultraviolet radiation, e.g. for separating visible light from infrared and/or ultraviolet radiation · CPC title

  • made of organic materials, e.g. plastics (G02B1/08 takes precedence) · CPC title

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What does patent US9791606B2 cover?
The problem of the present invention is to overcome drawbacks of conventional optical filters such as near-infrared cut filters and to provide an optical filter which generates little scatted light even during light absorption and has excellent transmittance property. The optical filter of the present invention is characterized by containing a squarylium-based compound and a compound which abso…
Who is the assignee on this patent?
Jsr Corp
What technology area does this patent fall under?
Primary CPC classification C09B67/0033. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Tue Oct 17 2017 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).