Conductive pattern, display device including conductive pattern, and method of manufacturing conductive pattern
A conductive pattern includes a metal layer and a first low reflective layer disposed on a first surface of the metal layer, the first low reflective layer including niobium carbide (NbC) and zinc oxide (ZnO).
1. A conductive pattern, comprising:
a metal layer; and
a first low reflective layer disposed on a first surface of the metal layer, the first low reflective layer including niobium carbide (NbC) and zinc oxide (ZnO).
2. The conductive pattern of claim 1 , wherein an amount of the zinc oxide included in the first low reflective layer is less than or equal to 50 atomic percent.
3. The conductive pattern of claim 1 , wherein the first low reflective layer further includes a metal.
4. The conductive pattern of claim 3 , wherein the metal includes aluminum (Al).
5. The conductive pattern of claim 3 , wherein an amount of the metal included in the first low reflective layer is less than or equal to 5 mass percent.
6. The conductive pattern of claim 1 , further comprising:
a second low reflective layer disposed on a second surface of the metal layer opposite to the first surface, the second low reflective layer including niobium carbide and zinc oxide.
7. The conductive pattern of claim 6 , wherein an amount of the zinc oxide included in the second low reflective layer is equal to an amount of the zinc oxide included in the first low reflective layer.
8. The conductive pattern of claim 1 , wherein a sidewall of the first low reflective layer contacts a sidewall of the metal layer.
9. The conductive pattern of claim 1 , wherein a thickness of the first low reflective layer is less than a thickness of the metal layer.
10. The conductive pattern of claim 1 , wherein the metal layer includes at least one of copper (Cu), aluminum (Al), titanium (Ti), and molybdenum (Mo).
11. A display device, comprising:
a substrate;
a transistor disposed on the substrate;
a display element disposed on the transistor;
an encapsulation layer covering the display element; and
a conductive pattern disposed between the substrate and the encapsulation layer or on the encapsulation layer, the conductive pattern including:
a metal layer; and
a first low reflective layer disposed on a first surface of the metal layer, the first low reflective layer including niobium carbide (NbC) and zinc oxide (ZnO).
12. The display device of claim 11 , wherein the metal layer is disposed between the substrate and the first low reflective layer.
13. The display device of claim 11 , wherein the first low reflective layer is disposed between the substrate and the metal layer.
14. The display device of claim 11 , wherein the conductive pattern further includes a second low reflective layer disposed on a second surface of the metal layer opposite to the first surface, the second low reflective layer including niobium carbide and zinc oxide.
15. The display device of claim 11 , wherein the conductive pattern is disposed between the substrate and the encapsulation layer, and is a gate line for transmitting a gate signal to the transistor or a data line for transmitting a data signal to the transistor.
16. The display device of claim 11 , wherein the conductive pattern is disposed on the encapsulation layer, and is a sensing electrode for sensing an input from a user.
17. A method of manufacturing a conductive pattern, the method comprising:
forming a metal material layer;
forming a first low reflective material layer on a first surface of the metal material layer, the first low reflective material layer including niobium carbide (NbC) and zinc oxide (ZnO); and
integrally etching the metal material layer and the first low reflective material layer by an etchant.
18. The method of claim 17 , wherein an amount of the zinc oxide included in the first low reflective material layer is less than or equal to 50 atomic percent.
19. The method of claim 17 , wherein an etch rate of the metal material layer by the etchant is substantially equal to an etch rate of the first low reflective material layer by the etchant.
20. The method of claim 17 , further comprising:
forming a second low reflective material layer on a second surface of the metal material layer opposite to the first surface, the second low reflective material layer including niobium carbide and zinc oxide,
wherein the second low reflective material layer is integrally etched with the metal material layer and the first low reflective material layer by the etchant.