Results 251 to 260 of about 11,337 (309)
Fluctuation-Mediated Model for Hydrogen-Inhibited N<sub>2</sub> Dissociation on Iron─Implications for Ambient Ammonia Electrosynthesis. [PDF]
Hanslin SØ, Nørskov JK.
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Positioning versatile inorganic cathode materials in the aqueous zinc-ion battery landscape. [PDF]
Guo K, Lv Y, Song Z, Gan L, Liu M.
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Mitigating Electrochemical Isolation in Ni-Rich Layered Cathodes for Durable Solid-State Batteries. [PDF]
Bhadra A +7 more
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Observations of hollow cathode light emission from a transient hollow cathode discharge
Experimental observations are presented on the light emission from the hollow cathode region of a pulsed hollow cathode discharge. A 2 mJ, 30 ns, 1.06 μm laser pulse incident on the back of the cathode is used to trigger the discharge. The temporal evolution of the light emission from this region is recorded in 50 nm spectral bands.
WYNDHAM, E +3 more
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Hollow cathode chemical modelling [PDF]
In this paper the state of hollow cathode life time modelling at the University of Southampton will be reported. Two models have been developed: one for BaO depletion from the hollow cathode insert and another for low work function compounds deposition and desorption.
Coletti, M., Gabriel, S.B.
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Physical Processes in Hollow Cathodes
AIAA Journal, 1976Hollow cathodes with cavity diameters of 1.9 cm have been operated in an MPD arc configuration at discharge currents from 0.25 kA to 30 kA. Current and potential distributions, measured with probes in the cathode cavity, show that a spontaneous mode of hollow cathode operation, wherein the current distribution penetrates upstream into the cavity, has ...
M. KRISHNAN +3 more
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SERT II - Durability of the hollow cathode and future applications of hollow cathodes
Journal of Spacecraft and Rockets, 19701 Kerslake, W. R., Byers, D. C., and Staggs, J. F., "SERT II Experimental Thruster System," AIAA Paper 67-700, Colorado Springs, Colo., 1967; also "SERT II: Mission and Experiments," Journal of Spacecraft and Rockets, Vol. 7, No. 1, Jan. 1970, pp. 4-6. 2 Kerrisk, D. J. and Kaufman, H. R., "Electric Propulsion Systems for Primary Spacecraft Propulsion,"
VINCENT K. RAWLIN, WILLIAM R. KERSLAKE
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Journal of Vacuum Science & Technology A: Vacuum, Surfaces, and Films, 1999
A new type of plasma sputtering device, named the hollow cathode magnetron (HCM), has been developed by surrounding a planar magnetron cathode with a hollow cathode structure. Operating characteristics of HCMs, current–voltage (I–V) curves for fixed discharge pressure and voltage–pressure (V–p) curves for fixed cathode current, are measured.
Zhehui Wang, Samuel A. Cohen
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A new type of plasma sputtering device, named the hollow cathode magnetron (HCM), has been developed by surrounding a planar magnetron cathode with a hollow cathode structure. Operating characteristics of HCMs, current–voltage (I–V) curves for fixed discharge pressure and voltage–pressure (V–p) curves for fixed cathode current, are measured.
Zhehui Wang, Samuel A. Cohen
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Hollow Cathode Discharge with Thermionic Cathodes
Journal of Applied Physics, 1971The electrical and visual characteristics of a dc hollow cathode discharge with indirectly heated thermionic cathodes were obtained in argon at a few Torr. Two facing planar cathodes of variable separation form the hollow cathode geometry. A hollow cathode effect was observed in the ``ball-of-fire'' mode and in the ``low-voltage arc'' mode. The results
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Collisionless instability of the cathode sheath in a hollow-cathode discharge
Physical Review Letters, 1993High-intensity periodic variations of the potential fall across the cathode sheath are observed in a low-pressure magnetic-field-free hollow-cathode discharge. These potential variations cause modulation of the discharge current, reaching a depth of almost 100%.
, Arbel +4 more
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