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The formation of the 2D electron gas is attributed to the Fermi level pinning.
The enhanced sensitivity of the ZnO/ZnS hollow nanocages sensor to ethanol gas is attributed to both the unique morphology and the heterojunction between ZnO and ZnS.
The difference in the susceptibility to the embrittlement between water vapor and hydrogen gas is attributed to the difference in the decomposition rate on the alloy surface.
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In European countries, 36% of total greenhouse gas emissions is attributed to buildings.
The anomalous transport of liquid toward the gas side is attributed to isothermal distillation proceeding in the electrode pores.
Such significant enhancement in gas diffusion is attributed to the smooth VACNT channels in the membranes where backscattering molecular collisions do not occur.
The increase in the gas holdup is attributed mainly to a significant reduction in the rise velocity of the bubble swarm due to the generation of standing waves in the column.
The enhanced gas response is attributed to a large amount of oxygen vacancy defects and unsaturated dangling bonds existing in the ZnO nanosheets with exposed crystal facet (0001), which is favorable for the adsorption of gas molecular on the sensor surface and result in improvement of the gas response.
The effect of the "inert" sweep gas flow rate is attributed to the mass transfer rate of gas phase species, especially hydrogen and potassium vapor.
It is well known that the adsorption process of NH3 gas on CNTs is attributed to both physisorption and chemisorptions.
The improvement of gas-sensing performance is attributed to the formation of p n junction at the interface between organic PT and inorganic WO3.
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Justyna Jupowicz-Kozak
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