Copper clad laminate film and electronic device including same
Disclosed are a copper-clad laminate film and an electronic device including the same. The copper-clad laminate film includes a fluorine-containing substrate, a tie layer disposed on the fluorine-containing substrate, and a copper layer disposed on the tie layer, wherein the tie layer may be a metal layer or metal alloy layer including a metal of a metal-oxygen (M-O) bond dissociation energy of 400 kJ/mol or more, and the tie layer may have a thickness of about 10 nm to about 100 nm.
1. A copper-clad laminate film, comprising:
a fluorine-containing substrate;
a tie layer disposed on the fluorine-containing substrate; and
a copper layer positioned on the tie layer,
wherein the fluorine-containing substrate comprises a fluorine layer disposed on one side or both sides of a substrate,
wherein the fluorine layer comprises one or more fluoropolymers,
wherein the copper layer comprises a copper seed layer on the tie layer and a copper plating layer on the copper seed layer; and
wherein the tie layer is a metal layer or a metal alloy layer, comprising a metal having a metal-oxygen (M-O) bond dissociation energy of 400 KJ/mol or more, the tie-layer has a thickness of about 10 nm to about 100 nm, and the metal consists of at least one metal element selected from among W, Ti, Sn, Al, and Mo, and further consists of Ni, and a content of the Ni is 50 wt % or less.
2. The copper-clad laminate film of claim 1 , wherein the copper-clad laminate film has a water contact angle of 120° or less with respect to the fluorine-containing substrate.
3. The copper-clad laminate film of claim 1 , wherein the copper-clad laminate film has a diiodomethane contact angle of 90° or less with respect to the fluorine-containing substrate.
4. The copper-clad laminate film of claim 1 , wherein the fluorine-containing substrate has a surface energy of about 11 dyne/cm to about 25 dyne/cm.
5. The copper-clad laminate film of claim 1 , wherein a fluorine content of a surface of the fluorine-containing substrate is about 60 atom % to about 75 atom %.
6. The copper-clad laminate film of claim 1 , wherein the copper seed layer and the copper plating layer has a peel strength of 0.65 kgf/cm or more with respect to the fluorine-containing substrate, as measured after being left at room temperature (25° C.) for 3 days.
7. The copper-clad laminate film of claim 1 , wherein the copper seed layer and the copper plating layer with respect to the fluorine-containing substrate has a peel strength of 0.35 kgf/cm or more as measured after two or more heat treatments at a temperature of 150° C. or higher and being left for 1 day.
8. The copper-clad laminate film of claim 1 , wherein the copper plating layer has a thickness of 12 μm or less.
9. An electronic device comprising the copper-clad laminate film according to any one of claim 1 .
10. The electronic device of claim 9 , wherein the electronic device comprises an antenna element or an antenna cable.