π-conjugated heavy-metal polymers for organic white-light-emitting diodes
A polymer mixture emits a broad spectrum of visible light that appears white or near-white in the aggregate. The polymer mixture comprises two (or more) components in the active layer. A heavy atom, such as platinum and/or iridium, present in the backbone of the mixture acts via a spin-orbit coupling mechanism to cause the ratio of fluorescent to phosphorescent light emission bands to be of approximately equal strength. These two broad emissions overlap, resulting in an emission spectrum that appears to the eye to be white.
1. An organic light-emitting diode (OLED), comprising:
an active layer including a π-conjugated polymer backbone; and
a plurality of heavy metal atoms in the backbone causing fluorescent to phosphorescent emission bands to overlap upon excitation, wherein each of the heavy metal atoms is iridium;
wherein the π-conjugated polymer backbone consists of the iridium atoms separated by spacers consisting of at least three unsubstituted phenyl groups connected by ethynyl linker groups;
wherein the spacers have the structure -Et-(Ph-Et-) n -, with each -Et- being ethynylene, each -Ph- being a para-linked unsubstituted phenylene, and n=3, 5 or 7.
2. The OLED of claim 1 , wherein the emission bands are chemically tuned through the placement spacers of different length between adjacent iridium atoms in the backbone.
3. The OLED of claim 1 , wherein the active layer comprises a single polymer having a π-conjugated polymer backbone.
4. The OLED of claim 1 , wherein the active layer comprises a mixture of two or more polymers having a π-conjugated polymer backbone.