2002
DOI: 10.1016/s0925-4005(01)00971-6
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Humidity sensitive characteristics of Zn2SnO4–LiZnVO4 thick films prepared by the sol–gel method

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Cited by 103 publications
(53 citation statements)
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“…The porous microstructure and the surface reactivity with water are key parameters for the performance of semiconducting humidity materials [42]. Water is absorbed by porous materials when they were exposed to humidity leading to an increase of their electrical conductivity [43][44][45]. The larger is the surface area, larger is the content of adsorbed water, and consequently larger is the density of charge carriers usually protons.…”
Section: Humidity Sensing Mechanismmentioning
confidence: 99%
“…The porous microstructure and the surface reactivity with water are key parameters for the performance of semiconducting humidity materials [42]. Water is absorbed by porous materials when they were exposed to humidity leading to an increase of their electrical conductivity [43][44][45]. The larger is the surface area, larger is the content of adsorbed water, and consequently larger is the density of charge carriers usually protons.…”
Section: Humidity Sensing Mechanismmentioning
confidence: 99%
“…They take into account the chemisorbed and physisorbed layers of water molecules as well as the capillary condensation of water inside tiny pores. The performance of a ceramic humidity sensor is strongly influenced by the porous microstructure and by the surface reactivity with water [5]. The presence of a large pore volume with a convenient pore size distribution is considered fundamental to achieve a high humidity sensitivity [6].…”
Section: Introductionmentioning
confidence: 99%
“…(0.64 Å ) [23], it is worthwhile to investigate whether LiZnVO 4 and LiMgVO 4 would exhibit excellent microwave dielectric properties. LiMgVO 4 and LiZnVO 4 have attracted attention due to their wide use in widely used in electrochemical devices, humidity sensors and luminescence devices because of their interesting properties [24,25]. A recent study of the structure and cation distribution of LiMgVO 4 and LiZnVO 4 revealed that in LiMgVO 4 the cation distribution was partly disordered while higher cationic disorder was observed in LiZnVO 4 [26].…”
Section: Introductionmentioning
confidence: 99%