Hall and photoresponse measurements associated with ultraviolet and near ultraviolet degradation of thin zinc oxide films
Optical and electrical parameters of zinc oxide degradation during exposure to spectral radiation
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Optical and electrical parameters of zinc oxide degradation during exposure to spectral radiation
Photoconductivity and electric conductivity of polycrystalline zinc oxide thin film under low intensity irradiation
Binder stabilized zinc oxide pigmented coating for spacecraft thermal control
The electronic structure of wurtzite zinc oxide, investigated over the widest possible photon energy range by means of photoemission techniques, is described. Of particular interest among the results of the photoemission study are the location of the Zn 3rd core states, the width of the upper valence bands, and structure in the conduction-band and valence-band density of states.
Cathodic reduction of aqueous ferricyanide ion on single crystal zinc oxide electrode
UV irradiation effect on electrical conductivity of zinc oxide single crystals
Ferricyanide/ferrocyanide couple prevents zinc oxide pigment degradation in thermal control coatings. Chemical couple retards physical optical property changes.
Several test programs were carried out to determine the performance and limitations of sealed, silver oxide zinc cells for (1) 24-hr synchronous orbits, (2) orbits that would require a maximum of six cycles per day, and (3) missions to other planets requiring maintenance of maximum capacity for probe operations during planet encounter. The results are summarized to provide power system designers with guidelines bearing on capacity maintenance during cycling, cycle life, charged stand effects, and internal pressure characteristics. The life of zinc silver oxide cells is shown to be limited to one to two years over the temperature range of 0 to 24 C.
Effects of freezing-melting cycles on primary silver oxide zinc batteries
Mechanisms of recovery of radiation damaged silicate treated zinc oxide thermal control coatings
Electric field effect on chemisorption of oxygen on zinc oxide, discussing electron transfer mechanism
Thermal control coating for spacecraft based on silicate treatment of zinc oxide
Oriented attachment (OA) occurs when nanoparticles in solution align their crystallographic axes prior to colliding and subsequently fuse into single crystals. Traditional colloidal theories such as DLVO provide a framework for evaluating OA but fail to capture key particle interactions due to the atomistic details of both the crystal structure and the interfacial solution structure. Using zinc oxide as a model system, we investigated the effect of the solvent on short-ranged and long-ranged particle interactions and the resulting OA mechanism. In situ TEM imaging showed that ZnO nanocrystals in toluene undergo long-range attraction comparable to 1kT at separations of 10 nm and 3kT near particle contact. These observations were rationalized by considering non-DLVO interactions, namely dipole-dipole forces and torques between the polar ZnO nanocrystals. Langevin dynamics simulations showed stronger interactions in toluene compared to methanol solvents, consistent with the experimental results. Concurrently, we performed atomic force microscopy measurements using ZnO-coated probes for the short-ranged interaction. Our data provided valuable insights into another type of non-DLVO interaction, namely the repulsive solvation force. Specifically, the solvation force was stronger in water compared to ethanol and methanol, due to the stronger hydrogen bonding and denser packing of water molecules at the interface. In conclusion, our results highlight the importance of non-DLVO forces in a general framework for understanding and predicting particle aggregation and attachment.
Optical transmittance, Hall effect, and spectral photoconductivity measurements on thin films of zinc oxide in vacuum to determine degradation by ultraviolet radiation
This investigation was undertaken to determine original and useful information about the bidirection reflectance of zinc oxide. The bidirectional reflectance will be studied for the spectra between .25-2.5 microns and the hemisphere above the specimen. The following factors will be considered: (1) surface conditions; (2) specimen preparation; (3) specimen substrate, (4) polarization; (5) depolarization; (6) wavelength; and (7) angles of incident and reflection. The bidirectional reflectance will be checked by experimentally determined angular hemispherical measurements or hemispherical measurements will be used to obtain absolute bidirectional reflectance.
Use of miniature fuel cells to control pressure in sealed silver oxide-zinc storage cells
High cycle life 30 AH sealed silver oxide-zinc cell development
Current-voltage characteristics of cathodic reduction of aqueous ferricyanide ion, using single crystal of n-type semiconductor zinc oxide