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bathocuproine

Known as: 2,9-dimethyl-4,7-diphenyl-1,10-phenanthroline 
 
National Institutes of Health

Papers overview

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Highly Cited
2016
Highly Cited
2016
Realizing the theoretical limiting power conversion efficiency (PCE) in perovskite solar cells requires a better understanding… Expand
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Highly Cited
2015
Highly Cited
2015
Perovskite film generally has rough surface morphology due to the voids between the grain domains. Smoothed interface contact… Expand
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Highly Cited
2010
Highly Cited
2010
We report the implementation of continuous, highly flexible, and transparent graphene films obtained by chemical vapor deposition… Expand
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Highly Cited
2006
Highly Cited
2006
The role of bathocuproine (BCP) buffer layer inserted between active layer and Al contact in photovoltaic cells based on… Expand
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Highly Cited
1999
Highly Cited
1999
Zn(II) and Cu(II) precipitate Aβ in vitro into insoluble aggregates that are dissolved by metal chelators. We now report evidence… Expand
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Highly Cited
1999
Highly Cited
1999
The four organic–organic heterointerfaces formed by depositing the organic semiconductor bathocuproine on tris(8-hydroxy… Expand
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Highly Cited
1998
Highly Cited
1998
We describe a new class of fluorescence polarization immunoassays based on the luminescence from a Re(I) metal-ligand complex. Re… Expand
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Highly Cited
1997
Highly Cited
1997
A highly luminescent rhenium (I) metal-ligand complex [Re(bcp)(CO)3(4-COOHPy)](ClO4), where bcp is 2,9-dimethyl-4,7-diphenyl-1,10… Expand
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Highly Cited
1989
Highly Cited
1989
Blood stream forms (BSF) of Trypanosoma brucei brucei GUT at 3.1 were propagated in vitro in the absence of feeder layer cells at… Expand
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Highly Cited
1989
Highly Cited
1989
Site-specific DNA damage by Cu(II) plus H2O2 was investigated by a DNA-sequencing technique. Cu(II) plus H2O2 induced strong DNA… Expand
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