AU2005271663B2

Stacked organic photosensitive devices

Abstract

A device is provided having a first electrode, a second electrode, a first photoactive region having a characteristic absorption wavelength ?1 and a second photoactive region having a characteristic absorption wavelength ?2. The photoactive regions are disposed between the first and second electrodes, and further positioned on the same side of a reflective layer, such that the first photoactive region is closer to the reflective layer than the second photoactive region. The materials comprising the photoactive regions may be selected such that ?1 is at least about 10% different from ?2. The device may further comprise an exciton blocking layer disposed adjacent to and in direct contact with the organic acceptor material of each photoactive region, wherein the LUMO of each exciton blocking layer other than that closest to the cathode is not more than about 0.3 eV greater than the LUMO of the acceptor material.

AU2005271663B2, drawing sheet 1
Sheet 1 of 10

Term

Term ended

Expired 29 July 2025, 1.2 years ago.

  1. Priority and filed
  2. Granted
  3. Expired
  4. Today

22 claims: 7 independent, 15 dependent

  1. 1
    THE CLAIMS DEFINING THE INVENTION ARE AS FOLLOWS:1. A device comprising: a first electrode;a second electrode;a first organic photoactive region disposed between the first electrode and the second electrode;and a second organic photoactive region disposed between the first electrode and the second electrode;wherein the first organic photoactive region and the second organic photoactive region have different absorption characteristics;wherein the device includes a reflective layer, and the first organic photoactive region and the second organic photoactive region are disposed on the same side of the reflective layer, and wherein the first organic photoactive region is disposed closer to the reflective layer than the second organic photoactive region, and wherein the second organic photoactive region is a stronger absorber at longer wavelengths than the first organic photoactive region.
  2. 13
    The device of any one of claims 1 to 7, wherein each photoactive region comprises:2005271663 07 Apr 2011 a first organic layer comprising a mixture of an organic acceptor material and an organic donor material;a second organic layer in direct contact with the first organic layer, wherein the second organic layer comprises an unmixed layer of the organic donor material of the first organic 5 layer;and a third organic layer in direct contact with the first organic layer, wherein the third organic layer comprises an unmixed layer of the organic acceptor material of the First organic layer, the first organic layer being between second organic layer and the third organic layer;the device further comprising a first exciton blocking layer disposed adjacent to and in 10 direct physical contact with the third organic layer of the first organic photoactive region, and a second exciton blocking layer disposed adjacent to and in direct physical contact with the third organic layer of the second organic photoactive region.
  3. 14
    The device of any one of claims I to 7, wherein each photoactive region comprises:15 a first organic layer comprising a mixture of an organic acceptor material and an organic donor material;and a second organic layer in direct contact with the first organic layer, wherein the second organic layer comprises an unmixed layer of the organic donor material of the first organic layer;20 the device further comprising a first exciton blocking layer disposed adjacent to and in direct physical contact with the first organic layer of the first organic photoactive region, and a second exciton blocking layer disposed adjacent to and in direct physical contact with the first organic layer of the second organic photoactive region. 25
  4. 15
    The device of any one of claims I to 7, wherein each photoactive region consists of:a first organic layer comprising a mixture of an organic acceptor material and an organic donor material;and a second organic layer in direct contact with the first organic layer, wherein the second organic layer comprises an unmixed layer of the organic acceptor material of the first organic 30 layer;the device further comprising a first exciton blocking layer disposed adjacent to and in direct physical contact with the second organic layer of the first organic photoactive region, and a second exciton blocking layer disposed adjacent to and in direct physical contact with the second organic layer of the second organic photoactive region.
  5. 16
    The device of any one of claims 1 to 7, wherein each photoactive region comprises:a first organic layer comprising an unmixed layer of the acceptor donor material;and a second organic layer in direct contact with the first organic layer comprising an unmixed layer of the organic donor material;the device further comprising a first exciton blocking layer disposed adjacent to and in direct physical contact with the first organic layer of the first organic photoactive region, and a second exciton blocking layer disposed adjacent to and in direct physical contact with the first organic layer of the second organic photoactive region.
  6. 17
    The device of any one of claims 1 to 7, wherein each photoactive region consists of:a first organic layer comprising a mixture of an organic acceptor material and an organic donor material, the device further comprising a first exciton blocking layer disposed adjacent to and in direct physical contact with the first organic layer of the first organic photoactive region, and a second exciton blocking layer disposed adjacent to and in direct physical contact with the first organic layer of the second organic photoactive region.
  7. 22
    A photosensitive device substantially as herein described with reference to Figures 1 to 9 of the accompanying drawings. 2005271663 07 Apr 2011 4il«nam»