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Broad spectral sensitivity and improved efficiency in CuPc/Sub-Pc organic photovoltaic devices
被引:39
作者:

Kumar, Hemant
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Natl Phys Lab, Ctr Organ Elect, New Delhi 110012, India Natl Phys Lab, Ctr Organ Elect, New Delhi 110012, India

Kumar, Pankaj
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Natl Phys Lab, Ctr Organ Elect, New Delhi 110012, India Natl Phys Lab, Ctr Organ Elect, New Delhi 110012, India

Bhardwaj, Ramil
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Natl Phys Lab, Ctr Organ Elect, New Delhi 110012, India Natl Phys Lab, Ctr Organ Elect, New Delhi 110012, India

Sharma, G. D.
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Natl Phys Lab, Ctr Organ Elect, New Delhi 110012, India Natl Phys Lab, Ctr Organ Elect, New Delhi 110012, India

Chand, Suresh
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Natl Phys Lab, Ctr Organ Elect, New Delhi 110012, India Natl Phys Lab, Ctr Organ Elect, New Delhi 110012, India

Jain, S. C.
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Natl Phys Lab, Ctr Organ Elect, New Delhi 110012, India Natl Phys Lab, Ctr Organ Elect, New Delhi 110012, India

Kumar, Vikram
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Natl Phys Lab, Ctr Organ Elect, New Delhi 110012, India Natl Phys Lab, Ctr Organ Elect, New Delhi 110012, India
机构:
[1] Natl Phys Lab, Ctr Organ Elect, New Delhi 110012, India
关键词:
OPEN-CIRCUIT VOLTAGE;
POLYMER SOLAR-CELLS;
COPPER PHTHALOCYANINE;
SUBPHTHALOCYANINES;
LAYER;
FILMS;
D O I:
10.1088/0022-3727/42/1/015103
中图分类号:
O59 [应用物理学];
学科分类号:
摘要:
We demonstrate organic photovoltaic devices incorporating two donors, namely, copper phthalocyanine (CuPc) and boron sub-phthalocyanine chloride (Sub-Pc) in association with single acceptor fullerene (C-60) with sensitivity extending across the visible solar spectrum. It has been found that the absorption in different spectral regions in CuPc and Sub-Pc results in efficient harvesting of incident light photons which leads to enhanced power conversion efficiency (eta). An enhancement in. from 0.64%, in the device architecture indium-tin-oxide (ITO)/CuPc(20 nm)/C-60(40 nm)/bathophenanthroline (BPhen) (8 nm)/Al(150 nm), to similar to 1.3% in the optimized device having a 2 nm layer of Sub-Pc in the geometry ITO/CuPc(18 nm)/Sub-Pc(2 nm)/C-60 (40 nm)/BPhen (8 nm)/Al(150 nm) has been observed. This enhancement in. is dominantly attributed to the increment in short circuit current density (J(sc)) due to efficient photon harvesting by incorporation of dual donors.
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