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Ultrafast detection of charged photocarriers in conjugated polymers
Daniel Moses
,
Arthur Dogariu
, Alan J. Heeger
Research output
:
Contribution to journal
›
Article
›
peer-review
127
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Scopus citations
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Dive into the research topics of 'Ultrafast detection of charged photocarriers in conjugated polymers'. Together they form a unique fingerprint.
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Keyphrases
Conjugated Polymers
100%
Ultrasensitive Detection
100%
Poly(p-phenylene vinylene)
100%
Photocarriers
100%
Quantum Efficiency
40%
Photoexcitation
40%
Ethyl
20%
Applied Electric Field
20%
Spectral Region
20%
Pumping Power
20%
Methoxy
20%
High Energy Photons
20%
Phenylenevinylene
20%
Excited State Absorption
20%
Interchain Interaction
20%
Recombination Dynamics
20%
Energy Well
20%
Photoconductivity
20%
Photon Energy
20%
Carrier Lifetime
20%
Active Mode
20%
Photoinduced
20%
Secondary Processes
20%
Temporal Behavior
20%
Exciton-exciton Annihilation
20%
Exciton Lifetime
20%
Luminescent Polymers
20%
Ultrafast Measurements
20%
Charge Carrier Generation
20%
Carrier Recombination Dynamics
20%
Active Signals
20%
Natural Language Explanation
20%
Engineering
Quantum Efficiency
100%
Polymer
100%
Applied Electric Field
50%
Spectral Region
50%
Pump Energy
50%
Photon Energy
50%
Carrier Lifetime
50%
High Photon Energy
50%
Active Mode
50%
Secondary Process
50%
Charge Carrier
50%
Excited State
50%
Chemistry
Exciton
100%
Conjugated Polymer
100%
Electric Field
50%
Ethyl
50%
Photoexcitation
50%
Luminiscence Type
50%
Excited State Absorption
50%
Mechanical Strength
50%
Photoconductivity
50%
Poly(phenylene) Polymer
50%
Charge Carrier
50%
Material Science
Conjugated Polymer
100%
Charge Carrier
100%
Photoconductivity
100%
Carrier Lifetime
100%
Polymer
100%