Light-emitting device and method for manufacturing same
A light-emitting device includes a substrate, a light-emitting element provided on the substrate, the light-emitting element being configured to emit a first light, a wavelength conversion layer provided on the light-emitting element and containing a plurality of wavelength conversion particles configured to convert a wavelength of a part of the first light and to emit a second light, a light-transmissive plate provided above the wavelength conversion layer, and a wall including a light-reflective material, the wall surrounding the wavelength conversion layer and the light-transmissive plate and being in contact with a lateral surface of the light-transmissive plate at an inner surface of the wall. An upper portion of the wavelength conversion layer includes protrusions and recesses defined by the plurality of wavelength conversion particles. The wavelength conversion layer and the light-transmissive plate define an air layer therebetween.
1 . A light-emitting device comprising:
a substrate;
a light-emitting element provided on the substrate, the light-emitting element being configured to emit a first light;
a wavelength conversion layer provided on the light-emitting element and containing a plurality of wavelength conversion particles configured to convert a wavelength of a part of the first light and to emit a second light;
a light-transmissive plate provided above the wavelength conversion layer; and
a wall including a light-reflective material, the wall surrounding the wavelength conversion layer and the light-transmissive plate and being in contact with a lateral surface of the light-transmissive plate at an inner surface of the wall, wherein
an upper portion of the wavelength conversion layer includes protrusions and recesses defined by the plurality of wavelength conversion particles,
the wavelength conversion layer and the light-transmissive plate define an air layer therebetween,
an upper surface of the wall is flush with an upper surface of the light-transmissive plate,
the wavelength conversion layer is in direct contact with the light-emitting element, and
the light-transmissive plate is spaced apart from the wavelength conversion layer.
2 . The light-emitting device according to claim 1 , wherein
the wall includes a base material formed of a resin material, and a filler formed of the light-reflective material and dispersed in the base material;
the wall includes a first portion surrounding the wavelength conversion layer, and a second portion provided on the first portion and surrounding the first portion; and
a density of the filler contained in the first portion is higher than a density of the filler contained in the second portion.
3 . The light-emitting device according to claim 2 , wherein
the wall further includes a third portion provided on the second portion and surrounding the second portion, and
a density of the filler contained in the third portion is lower than the density of the filler contained in the second portion.
4 . The light-emitting device according to claim 1 , wherein
the lateral surface of the light-transmissive plate is perpendicular to an upper surface of the substrate.
5 . The light-emitting device according to claim 1 , wherein an upper surface of the wall has a shape that protrudes toward a direction away from the substrate.
6 . The light-emitting device according to claim 1 , wherein an upper surface of the wall is parallel to an upper surface of the substrate.
7 . The light-emitting device according to claim 1 , wherein
the wavelength conversion layer further includes a glass layer covering a surface of each of the plurality of wavelength conversion particles,
the plurality of wavelength conversion particles are bonded to each other via the glass layer with an air layer being defined between the plurality of wavelength conversion particles.
8 . The light-emitting device according to claim 1 , wherein at least one of an upper surface and a lower surface of the light-transmissive plate has one of a protruding shape, a recessed shape, and a shape with protrusions and recesses.
9 . A method of manufacturing a light-emitting device, comprising:
placing, on a substrate, a light-emitting element configured to emit a first light;
disposing, in direct contact with the light-emitting element, a wavelength conversion layer containing a plurality of wavelength conversion particles such that an upper portion of the wavelength conversion layer includes protrusions and recesses defined by the plurality of wavelength conversion particles, the wavelength conversion particles being configured to convert a wavelength of a part of the first light and to emit a second light;
disposing a light-transmissive plate above the wavelength conversion layer with the light-transmissive plate being spaced apart from the wavelength conversion layer so that an air layer is defined between the light-transmissive plate and the wavelength conversion layer;
providing a light-reflective material that is uncured surrounding the wavelength conversion layer and the light-transmissive plate; and
curing the light-reflective material to form a wall, an upper surface of the wall being flush with an upper surface of the light-transmissive plate after the curing.
10 . The method of manufacturing a light-emitting device according to claim 9 , wherein
the providing of the light-reflective material includes placing an upper end of an inner surface of the light-reflective material at an identical position in a vertical direction as an upper end of a lateral surface of the light-transmissive plate.
11 . The method of manufacturing a light-emitting device according to claim 9 , wherein
the providing of the light-reflective material includes providing a first member of the light-reflective material surrounding the wavelength conversion layer, and providing a second member of the light-reflective material on the first member and surrounding the first member, a viscosity of the first member being higher than a viscosity of the second member.
12 . The method of manufacturing a light-emitting device according to claim 11 , wherein
the providing of the light-reflective material further includes providing a third member of the light-reflective material on the second member and surrounding the second member, a viscosity of the third member being lower than the viscosity of the second member.
13 . The method of manufacturing a light-emitting device according to claim 9 , wherein
the disposing of the wavelength conversion layer includes spraying, onto the light-emitting element, a slurry material including the plurality of wavelength conversion particles.
14 . The method of manufacturing a light-emitting device according to claim 13 , wherein
the slurry material further includes polysilazane, and
the disposing of the wavelength conversion layer further includes converting the polysilazane into silica by heating the slurry material or leaving the slurry material at room temperature for a prescribed time, to cover each of the plurality of wavelength conversion particles with a glass layer containing the silica with an air layer being defined between the plurality of wavelength conversion particles.
15 . The method of manufacturing a light-emitting device according to claim 9 , further comprising
performing surface processing on at least one of an upper surface and a lower surface of the light-transmissive plate.