2012
DOI: 10.1016/j.solmat.2011.09.002
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Direct application of P3HT-DOPO@ZnO nanocomposites in hybrid bulk heterojunction solar cells via grafting P3HT onto ZnO nanoparticles

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Cited by 21 publications
(12 citation statements)
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“…Dalam tulisan Wang [7], arus mengalami peningkatan dari 6,35 mA/cm 2 menjadi 9,55 mA/cm 2 pada saat penambahan Perylene derivative (PDI) ke campuran P3HT-ZnO. Li [8] melaporkan efisiensi sel surya polimer hibrid P3HT:DOPO-ZnO sebesar 0,077% . Baik Ji [6] dan Li [8] penelitian sel surya polimer hibrid dibuat di atas substrat kaca.…”
Section: Pendahuluanunclassified
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“…Dalam tulisan Wang [7], arus mengalami peningkatan dari 6,35 mA/cm 2 menjadi 9,55 mA/cm 2 pada saat penambahan Perylene derivative (PDI) ke campuran P3HT-ZnO. Li [8] melaporkan efisiensi sel surya polimer hibrid P3HT:DOPO-ZnO sebesar 0,077% . Baik Ji [6] dan Li [8] penelitian sel surya polimer hibrid dibuat di atas substrat kaca.…”
Section: Pendahuluanunclassified
“…Li [8] melaporkan efisiensi sel surya polimer hibrid P3HT:DOPO-ZnO sebesar 0,077% . Baik Ji [6] dan Li [8] penelitian sel surya polimer hibrid dibuat di atas substrat kaca.…”
Section: Pendahuluanunclassified
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“…A substantial amount of research has gone into creating ligands that will bridge the gap between the organic donor and inorganic acceptor. [15][16][17][18][19][20][21][22][23][24][25] These ligands are promising as they provide a simple cost-effective way to increase the effective interfacial area of the two materials, but they also introduce the issue of decreased charge transport and charge transfer. In general, devices that are fabricated with small or no ligands show higher PCE, but the fundamental effects of these ligands are still not well understood.…”
Section: Hybrid Devices and Device Architecturementioning
confidence: 99%