Organic/Inorganic Hybrid Electroluminescent Device with Two-Dimensional Material Emitting Layer
An organic light-emitting diode with an inorganic two-dimensional (2D) EL active material may comprise a plurality of layers on a plastic or glass substrate. In addition to the EL layer, the device may comprise a hole injection layer, a hole transport layer/electron blocking layer, an electron transport layer/hole blocking layer, an electron injection layer, and optional buffer layers such as poly(methyl methacrylate) (PMMA) to help balance the charge injection into the 2D material and redistribute the electric field.
1 . A 2D-OLED hybrid device comprising an inorganic two-dimensional (2D) electroluminescent (EL) active layer.
2 . The device of claim 1 , wherein the 2D EL active layer comprises a transition metal dichalcogenide.
3 . The device of claim 1 , wherein the device comprises a substrate having an adjacent anode layer.
4 . The device of claim 1 , wherein the device comprises a substrate having an adjacent cathode layer.
5 . The device of claim 1 , further comprising a buffer layer.
6 . The device of claim 5 , wherein the buffer layers comprises poly(methyl methacrylate).
7 . The device of claim 1 , further comprising a flexible substrate.
8 . The device of claim 1 , wherein the 2D EL active layer is substantially a monolayer.
9 . A process for preparing a 2D-OLED hybrid device comprising:
a. providing a substrate coated with an anode material;
b. depositing a hole injection layer;
c. depositing a hole transport layer/electron blocking layer;
d. depositing a 2D EL active layer;
e. depositing an electron transport layer/hole blocking layer;
f. depositing an electron injection layer; and
g. depositing a cathode layer.
10 . The process of claim 9 , wherein the 2D EL active layer is deposited via solution processing.
11 . The process of claim 9 , wherein the 2D EL active layer is deposited using 2D nanoparticles.
12 . The process of claim 11 , wherein the 2D nanoparticles are functionalized with ligands.
13 . The process of claim 12 , wherein the ligands are selected from the group consisting of: short-chain ligands; and entropic ligands.
14 . The process of claim 9 , further comprising encapsulating the device.
15 . A process for preparing a 2D-OLED hybrid device comprising:
a. providing a substrate coated with an cathode material;
b. depositing an electron injection layer/electron transport layer/hole blocking layer;
c. depositing a 2D EL active layer;
d. depositing hole transport layer/electron blocking layer;
e. depositing hole injection layer; and
f. depositing an anode layer.
16 . The process of claim 15 , wherein the 2D EL active layer is deposited via solution processing.
17 . The process of claim 15 , wherein the 2D EL active layer is deposited in the form of a solution or dispersion of 2D nanoparticles.
18 . The process of claim 17 , wherein the 2D nanoparticles are functionalized with ligands.
19 . The process of claim 18 , wherein the ligands are selected from the group consisting of: short-chain ligands; and entropic ligands.
20 . The process of claim 15 , further comprising encapsulating the device.