Drift mobilities of holes and electrons in naphthalene single crystals.
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Engineering topics
Publications and source records attributed to Hermann, A. M..
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The transit times and pulse shapes of photoinjected carriers moving in the presence of trapped space charge are derived. Two distributions are considered: uniformly trapped space charge, and trapped space charge decreasing exponentially in position from the injecting electrode. The pulse shapes are in some cases similar to those arising from transient space-charge-limited currents. The results in the case of the exponentially trapped space charge may have application in analysis of pulses taken in the presence of space charge trapped in the excitation layer or on the surface of insulators.
Use of space-charge-limited current (SCLC) to observe defect annealing in neutron-irradiated silicon. From the observation of the trap-filled-limit voltage a deep-trap concentration in the irradiated unannealed crystals is found to be at least 1.4 x 10 to the 12th power per cu cm. Shallow traps are also observed. This deep-trap concentration decreases with anneal temperature up to 200 C, above which SCLC can no longer be observed. There is evidence that at least some of this decrease is due to the conversion of the deep traps to shallow traps.
Transient photoconductivity measurements of room temperature electron mobility in deuterated anthracene single crystals, discussing isotope effect
Method of producing output voltage from photovoltaic cell using poly-N-vinyl carbazole complexed with iodine
Activated carrier mobility confirmed in organic solids
Electrical properties of tetracyanoquinodimethane /TCNQ/ complexes representing unit segments of nonconjugated and conjugated polymers
Environmental and reaction studies on electrochemical cells using metal electrodes and phenothiazine-iodine charge transfer complexes
Certain charge transfer complexes formed from organic polymers and iodine generate appreciable voltages at relatively low impedances upon exposure to light. These films show promise in applications requiring chemically and electrically stable films as detectors of optical radiation and as energy converters in photovoltaic cells.
Na- acenaphthene reaction temperature dependence, studying optical density, precipitation, ion pair formation, coupling constants and hyperfine structure
Poly-N-vinyl carbazole-iodine charge transfer photovoltaic effect spectral and intensity dependence, noting possible radiation detection and energy conversion applications
Treating organic polymers with iodine improves the electrical conductivity. Diffusion enables products of desired properties to be custom formulated. This eliminates a buildup of static electricity and the need for fillers or bound metal salts.
N-vinyl carbazole reactions with anionic initiators, discussing radical anion and polymer formation and ESR spectra
Solid state electrochemical solar cell using various anode metals and charge transfer complexes as cathodes, noting I-V characteristics and discharge curves
Hall effect, resistivity, spin resonance and thermoelectric properties of poly/N-vinyl carbazole/-iodine complex, demonstrating charge transfer state existence in system
Reactions of N-vinylcarbazole with anionic initiator
Electrochemical cells with solid state components employ charge transfer complexes or donor-acceptor complexes in which the donor component is an organic compound and the acceptor component is a halogen. A minor proportion of graphite added to these composition helps reduce the resistivity.
Hall effect in poly-n-vinylcarbazole-iodine charge-transfer complex, noting sign discrepancy of majority carrier