Metal coating method, light-emitting device, and manufacturing method for the same
A metal coating method includes forming a metal layer on a substrate including a first member and a second member, the second member having a lower thermal conductivity than a thermal conductivity of the first member, and irradiating the metal layer formed on the first member and the second member with a laser beam such that, after irradiation, the metal layer formed on the first member remains, and the metal layer formed on the second member is removed.
1. A metal coating method comprising:
providing a substrate that includes:
a first member having a first surface, and
a second member having a second surface,
wherein the first surface and the second surface are coplanar, and
wherein a thermal conductivity of the second member is lower than a thermal conductivity of the first member;
forming a metal layer on the first surface and the second surface; and
irradiating the metal layer formed on the first surface and the second surface with a laser beam such that, after irradiation, a portion of the metal layer formed on the first surface remains, and a portion of the metal layer formed on the second surface is removed.
2. The metal coating method according to claim 1 , wherein the metal layer is formed continuously on the first surface and the second surface.
3. The metal coating method according to claim 1 ,
wherein during irradiation with the laser beam, an irradiation spot of the laser beam is continuously applied on a surface of the metal layer.
4. The metal coating method according to claim 1 ,
wherein during irradiation with the laser beam, an irradiation spot is intermittently applied on a surface of the metal layer.
5. The metal coating method according to claim 1 ,
wherein during irradiation with the laser beam, the portion of the metal layer formed on the second surface is removed by laser ablation.
6. The metal coating method according to claim 1 ,
wherein the metal layer is formed on substantially an entire surface of the substrate including the first surface and the second surface, and the laser beam irradiates substantially an entire surface of the metal layer.
7. The metal coating method according to claim 1 ,
wherein the first member is an electrode of a light-emitting element, and the second member is a coating member that coats the light-emitting element.
8. The metal coating method according to claim 1 ,
wherein the first member is comprised of metal, and the second member is comprised of resin.
9. The metal coating method according to claim 1 ,
wherein the first member is comprised of copper, and the metal layer is comprised of a stack of a nickel layer and a gold layer.
10. The metal coating method according to claim 1 ,
wherein the thermal conductivity of the first member is 500 times or greater than the thermal conductivity of the second member.
11. A manufacturing method for a light-emitting device, the method comprising:
providing a structure comprising:
an electrode having a first surface, and
a coating member having a second surface,
wherein the first surface and the second surface are coplanar;
forming a metal layer on the first surface and the second surface; and
irradiating the metal layer formed on the first surface and the second surface with a laser beam such that, after irradiation, a portion of the metal layer formed on the first surface remains, and a portion of the metal layer formed on the second surface is removed.
12. The manufacturing method for a light-emitting device according to claim 11 , wherein the metal layer is formed continuously on the first surface and the second surface.
13. The manufacturing method for a light-emitting device according to claim 11 ,
wherein during irradiation with the laser beam, an irradiation spot of the laser beam is continuously applied on a surface of the metal layer.
14. The manufacturing method for a light-emitting device according to claim 11 ,
wherein during irradiation with the laser beam, an irradiation spot is intermittently applied on a surface of the metal layer.
15. The manufacturing method for a light-emitting device according to claim 11 ,
wherein during irradiation with the laser beam, the portion of the metal layer formed on the second surface is removed by laser ablation.