Carrier Lifetime Extension via the Incorporation of Robust Hole/Electron Blocking Layers in Bulk Heterojunction Polymer Solar Cells
- Authors
- Yoon, Youngwoon; Kim, Hyeong Jun; Cho, Chul-Hee; Kim, Seulki; Son, Hae Jung; Ko, Min-Jae; Kim, Honggon; Lee, Doh-Kwon; Kim, Jin Young; Lee, Wonmok; Kim, Bumjoon J.; Kim, BongSoo
- Issue Date
- 2014-01-08
- Publisher
- American Chemical Society
- Citation
- ACS Applied Materials & Interfaces, v.6, no.1, pp.333 - 339
- Abstract
- We report the achievement of a power conversion efficiency (PCE) improvement in P3HT:PCBM-based bulk-heterojunction type polymer solar cells using photocrosslinked P3HT (c-P3HT) as the electron blocking/hole extraction layer and titanium oxide nanoparticles (TiO2) as the hole blocking/electron extraction layer. Devices prepared with a 20 nm thick c-P3HT layer showed an improved PCE of 3.4% compared to devices prepared without the c-P3HT layer (PCE = 3.0%). This improvement was attributed to an extension in the carrier lifetime and an enhancement in the carrier mobility. The incorporation of the c-P3HT layer lengthened (by more than a factor of 2) the carrier lifetime and increased (by a factor of 5) the hole mobility. These results suggest that the c-P3HT layer not only prevented non-geminate recombination but it also improved carrier transport. The PCE was further improved to 4.0% through the insertion of a TiO2 layer that acted as an effective hole-blocking layer at the interface between the photoactive layer and the cathode. This work demonstrates that the incorporation of solution-processable hole and electron blocking/extraction layers offers an effective means for preventing nongeminate recombination at the interfaces between a photoactive layer and an electrode in bulk-heterojunction-type polymer solar cells.
- Keywords
- ORGANIC PHOTOVOLTAIC DEVICES; OPEN-CIRCUIT VOLTAGE; SELF-ORGANIZATION; PHASE-SEPARATION; BUFFER LAYERS; EFFICIENCY; PHOTODISSOCIATION; RECOMBINATION; MORPHOLOGY; DIFFUSION; ORGANIC PHOTOVOLTAIC DEVICES; OPEN-CIRCUIT VOLTAGE; SELF-ORGANIZATION; PHASE-SEPARATION; BUFFER LAYERS; EFFICIENCY; PHOTODISSOCIATION; RECOMBINATION; MORPHOLOGY; DIFFUSION; organic photovoltaics; polymer solar cells; power conversion efficiency; hole mobility; carrier lifetime; recombination rate
- ISSN
- 1944-8244
- URI
- https://pubs.kist.re.kr/handle/201004/127227
- DOI
- 10.1021/am404381e
- Appears in Collections:
- KIST Article > 2014
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