IP Library Granted Patent US 10,085,346
Granted Patent B2
US 10,085,346 · App. 15/228,472 · Granted Sep 25, 2018

Method for producing conductive member, and conductive member

Inventors: Kenichi Yamamoto (Ashigara-kami-gun, JP); Naoharu Kiyoto (Ashigara-kami-gun, JP); Kenji Naoi (Ashigara-kami-gun, JP)
Assignee: FUJIFILM Corporation
H05K3/06B32B15/01B32B27/36G03C1/46G03C1/832G03C1/853G03F7/0952G03F7/203G03F7/2022G03F7/2032G03F7/32G06F3/041G06F3/044H03K17/96H05K1/0298H05K1/09H05K3/106B32B2307/202B32B2307/412G06F2203/04103H05K1/0274H05K3/4685H05K2203/125H05K2203/1476H05K2203/1581
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Quick Facts
Patent No.
US 10,085,346
App. No.
15/228,472
Granted
Sep 25, 2018
Kind
B2
Abstract

Provided is a method for producing a conductive member including: forming a first silver halide emulsion layer, a light absorption layer, and a second silver halide emulsion layer on a transparent support in this order; performing pattern exposure on the first silver halide emulsion layer; and the second silver halide emulsion layer and applying a development treatment thereto to obtain a conductive layer comprising a thin metal wire, in which the light absorption layer absorbs at least some of the wavelengths of light to which the first silver halide emulsion layer or the second silver halide emulsion layer is exposed.

Claims (53)

1. A method for producing a conductive member comprising:

forming a first silver halide emulsion layer, a light absorption layer, and a second silver halide emulsion layer on a transparent support in this order; and

performing pattern exposure on the first silver halide emulsion layer and the second silver halide emulsion layer and applying a development treatment thereto to obtain a conductive layer including a thin metal wire,

wherein the light absorption layer absorbs at least a part of the wavelengths of light to which the first silver halide emulsion layer or the second silver halide emulsion layer is exposed.

2. The method for producing a conductive member according to claim 1 , wherein a pattern in which the first silver halide emulsion layer is exposed to light is different from a pattern in which the second silver halide emulsion layer is exposed to light, at least in part, in the performing of the pattern exposure on the first silver halide emulsion layer and the second silver halide emulsion layer.

3. The method for producing a conductive member according to claim 2 ,

wherein the spectral sensitivity of the first silver halide emulsion layer is different from the spectral sensitivity of the second silver halide emulsion layer,

the first silver halide emulsion layer and the second silver halide emulsion layer are respectively exposed to light having wavelengths different from each other, from one side of a front surface and a rear surface of the transparent support, and

the light absorption layer absorbs either of the light having wavelengths different from each other.

4. The method for producing a conductive member according to claim 2 ,

wherein the spectral sensitivity of the first silver halide emulsion layer is the same as the spectral sensitivity of the second silver halide emulsion layer,

the first silver halide emulsion layer and the second silver halide emulsion layer are respectively exposed to light having the same wavelength, from the surface or the rear surface of the transparent support, and

the light absorption layer absorbs light having the same wavelength.

5. The method for producing a conductive member according to claim 2 ,

wherein the spectral sensitivity of the first silver halide emulsion layer is different from the spectral sensitivity of the second silver halide emulsion layer,

the first silver halide emulsion layer and the second silver halide emulsion layer are respectively exposed to light having wavelengths different from each other, from the surface or the rear surface of the transparent support, and

the light absorption layer absorbs either of the light having wavelengths different from each other.

6. The method for producing a conductive member according to claim 2 , wherein the timing of light exposure of the first silver halide emulsion layer is the same as that of the second silver halide emulsion layer.

7. The method for producing a conductive member according to claim 2 , wherein the first silver halide emulsion layer and the second silver halide emulsion layer each contain a binder.

8. The method for producing a conductive member according to claim 2 ,

wherein the light absorption layer contains a solid dispersion dye, and

the coating amount of the solid dispersion dye is in a range of 200 mg/m 2 to 1,500 mg/m 2 .

9. The method for producing a conductive member according to claim 2 , wherein the conductive layer has a lattice-like pattern.

10. The method for producing a conductive member according to claim 1 ,

wherein the spectral sensitivity of the first silver halide emulsion layer is different from the spectral sensitivity of the second silver halide emulsion layer,

the first silver halide emulsion layer and the second silver halide emulsion layer are respectively exposed to light having wavelengths different from each other, from one side of a front surface and a rear surface of the transparent support, and

the light absorption layer absorbs either of the light having wavelengths different from each other.

11. The method for producing a conductive member according to claim 1 ,

wherein the spectral sensitivity of the first silver halide emulsion layer is the same as the spectral sensitivity of the second silver halide emulsion layer,

the first silver halide emulsion layer and the second silver halide emulsion layer are respectively exposed to light having the same wavelength, from the surface or the rear surface of the transparent support, and

the light absorption layer absorbs light having the same wavelength.

12. The method for producing a conductive member according to claim 1 ,

wherein the spectral sensitivity of the first silver halide emulsion layer is different from the spectral sensitivity of the second silver halide emulsion layer,

the first silver halide emulsion layer and the second silver halide emulsion layer are respectively exposed to light having wavelengths different from each other, from the surface or the rear surface of the transparent support, and

the light absorption layer absorbs either of the light having wavelengths different from each other.

13. The method for producing a conductive member according to claim 1 , wherein the timing of light exposure of the first silver halide emulsion layer is the same as that of the second silver halide emulsion layer.

14. The method for producing a conductive member according to claim 1 , wherein the first silver halide emulsion layer and the second silver halide emulsion layer each contain a binder.

15. The method for producing a conductive member according to claim 1 ,

wherein the light absorption layer contains a solid dispersion dye, and

the coating amount of the solid dispersion dye is in a range of 200 mg/m 2 to 1,500 mg/m 2 .

16. The method for producing a conductive member according to claim 1 , wherein the conductive layer has a lattice-like pattern.

17. A method for producing a conductive member comprising:

forming a first silver halide emulsion layer, a light absorption layer, and a second silver halide emulsion layer on a transparent support in this order; and

performing pattern exposure on the first silver halide emulsion layer and the second silver halide emulsion layer and applying a development treatment thereto to obtain a conductive layer including a thin metal wire,

wherein the timing of light exposure of the first silver halide emulsion layer is the same as that of the second silver halide emulsion layer, and a pattern in which the first silver halide emulsion layer is exposed to light is different from a pattern in which the second silver halide emulsion layer is exposed to light, at least in part, in the performing of the pattern exposure on the first silver halide emulsion layer and the second silver halide emulsion layer,

wherein the spectral sensitivity of the first silver halide emulsion layer is different from the spectral sensitivity of the second silver halide emulsion layer, and the first silver halide emulsion layer and the second silver halide emulsion layer are respectively exposed to light having wavelengths different from each other, from one side of a front surface and a rear surface of the transparent support, and

wherein the light absorption layer absorbs at least a part of the wavelengths of light to which the first silver halide emulsion layer or the second silver halide emulsion layer is exposed, and the light absorption layer absorbs either of the light having wavelengths different from each other.

18. A method for producing a conductive member comprising:

forming a first silver halide emulsion layer, a light absorption layer, and a second silver halide emulsion layer on a transparent support in this order; and

performing pattern exposure on the first silver halide emulsion layer and the second silver halide emulsion layer and applying a development treatment thereto to obtain a conductive layer including a thin metal wire,

wherein a pattern in which the first silver halide emulsion layer is exposed to light is different from a pattern in which the second silver halide emulsion layer is exposed to light, at least in part, in the performing of the pattern exposure on the first silver halide emulsion layer and the second silver halide emulsion layer,

wherein the first silver halide emulsion layer and the second silver halide emulsion layer each contain a binder, the spectral sensitivity of the first silver halide emulsion layer is different from the spectral sensitivity of the second silver halide emulsion layer, and the first silver halide emulsion layer and the second silver halide emulsion layer are respectively exposed to light having wavelengths different from each other, from one side of a front surface and a rear surface of the transparent support, and

wherein the light absorption layer absorbs at least a part of the wavelengths of light to which the first silver halide emulsion layer or the second silver halide emulsion layer is exposed, and the light absorption layer absorbs either of the light having wavelengths different from each other.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 5, 2016
From: YAMAMOTO, KENICHI; KIYOTO, NAOHARU; NAOI, KENJI
To: FUJIFILM CORPORATION
Reel/Frame 039349/0515 →
Priority Claims (1)
JP 2014-056748 · Mar 19, 2014 · national
Continuity (2)
Continuation PCTJP2015051686 · Jan 22, 2015
Related Publication 20160345439A1 · Nov 24, 2016